{"id":6,"date":"2014-04-30T22:01:01","date_gmt":"2014-05-01T03:01:01","guid":{"rendered":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/publications\/"},"modified":"2024-02-27T17:35:31","modified_gmt":"2024-02-27T22:35:31","slug":"publications","status":"publish","type":"page","link":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2024<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Torres, R.; Thal, L.B.; McBride, J.R.; Cohen, B.E.; Rosenthal, S.J. Quantum Dot Fluorescent Imaging: Using Atomic Structure Correlation Studies to Improve Photophysical Properties <em> J. Phys Chem C <\/em> <strong>2024. <\/strong><\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2023<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Click, S.M.; Koziel, A.C.; Torres, R.; Flores, S.; McBride, J.R.; Rosenthal, S.J. Quantitative morphological analysis of InP-based quantum dots reveals new insights into the complexity of shell growth <em> J Chem Physics <\/em> <strong>2023, <\/strong> <em> 158. <\/em><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Click, S.M.; Rosenthal, S.J. Synthesis, Surface Chemistry, and Fluorescent Properties of InP Quantum Dots <em> Chemistry of Materials <\/em> <strong>2023, <\/strong> <em> 35, <\/em>3.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2022<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Rosenthal, S.J. Methodological Nuances of Measuring Membrane Protein Nanoscopic Organization: A Case of Dopamine Transporter\u00a0<em>J Electrochem Society\u00a0<\/em><strong>2022<\/strong>,\u00a0<em>169,\u00a0<\/em>4.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bradsher, C.E.; Ontko, C.D.; Koziel, A.C.; McBride, J.R.; Rosenthal, S.J.\u00a0Fluorescent Colloidal Ferroelectric Nanocrystals\u00a0<em>J American Chemical Society<\/em>\u00a0<strong>2022,\u00a0<\/strong><em>144,\u00a0<\/em>4.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2021<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I.D.; Kovtun, O.; Torres, R.; Bellocchio, L.G.; Josephs, T; Rosenthal, S.J.\u00a0A Novel Biotinylated Homotryptamine Derivative for Quantum Dot Imaging of Serotonin Transporter in Live Cells\u00a0<em>Front Cell Neurosci\u00a0<\/em><strong>2021,\u00a0<\/strong><em>15.<\/em><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Torres, R.; Bellocchio, L. G.; Rosenthal, S. J. Membrane Nanoscopic Organization of D2L Dopamine Receptor Probed by Quantum Dot Tracking <em> Membranes <\/em> <strong>2021, <\/strong> <em> 11, <\/em>578.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McCarty, R.; Josephs, T.; Kovtun, O.; Rosenthal, S.J.\u00a0Enlightened: addressing circadian and seasonal changes in photoperiod in animal models of bipolar disorder\u00a0<em>Translational Psychiatry\u00a0<\/em><strong>2021,\u00a0<\/strong><em>11,\u00a0<\/em>373.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S.J.; Josephs, T.; Kovtun, O.; McCarty, R.\u00a0Rate of change in solar insolation is a hidden variable that influences seasonal alterations in bipolar disorder\u00a0<em>Brain and Behavior\u00a0<\/em><strong>2021.<\/strong><\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2020<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Stachurski, C. D.; Click, S. M.; Wolfe, K. D.; Dervishogullari, D.; Rosenthal, S. J.; Cliffel, D. E. Optical and Electrochemical Tuning of Hydrothermally Synthesized Nitrogen-doped Carbon Dots <em> Nanoscale Adv. <\/em> <strong>2020, <\/strong> <em>, 2 <\/em>3375-3383.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Torres, R.; Ferguson, R. S.; Josephs, T.; Rosenthal, S. J. Single Quantum Dot Tracking Unravels Agonist Effects on the Dopamine Receptor Dynamics <em> Biochemistry <\/em> <strong>2020, <\/strong> <em>, <\/em>.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Josephs, T.; Kovtun, O.; McCarty, R. Seasonal Effects on Bipolar Disorder: A Closer Look <em> Neuroscience and Biobehavioral Review <\/em> <strong>2020, <\/strong> <em>115, <\/em>199-219.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\"> Freymeyer, N. J.; Click, S. M.; Reid, K. R.; Chisholm, M. F., F.; Bradsher, C. E.; McBride, J. R.; Rosenthal, S. J. Effect of Indium Alloying on the Charge Carrier Dynamics of Thick-shell InP\/ZnSe Quantum Dots <em> J. Chem. Phys. <\/em> <strong>2020, <\/strong> <em>152, <\/em>161104.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Thal, L. B.; Kovtun, O.; Rosenthal, S. J., Single Quantum Dot Imaging in Living Cells. <em>Methods Mol. Biol. (N. Y., NY, U. S.) <\/em><strong>2020,<\/strong> <em>2135<\/em> (Quantum Dots), 169-177.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Thal, L. B.; Josephs, T.; Rosenthal, S. J., Quantitative Analysis of Single Quantum Dot Trajectories. <em>Methods Mol. Biol. (N. Y., NY, U. S.) <\/em><strong>2020,<\/strong> <em>2135<\/em> (Quantum Dots), 109-123.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\"> McBride, J. R.; Mishra, N.; Click, S. M.; Orfield, N. J.; Wang, F.; Acharya, K.; Chisholm, M. F.; Htoon, H.; Rosenthal, S. J.; Hollingsworth, J. A. Role of Shell Composition and Morphology in Achieving Single-Emitter Photostability for Green-Emitting \u201cGiant\u201d Quantum Dots <em> J. Chem. Phys. <\/em> <strong>2020, <\/strong> <em>152, <\/em>1-11.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\"> Thal, L. B.; Mann, V. R.; Sprinzen, D.; McBride, J. R.; Reid, K. R.; Tomlinson, I. D.; McMahon, D. G.; Cohen, B. E.; Rosenthal, S. J. Ligand-Conjugated Quantum Dots for Fast Sub-Diffraction Protein Tracking in Acute Brain Slices <em> Biomater. Sci. <\/em> <strong>2020, <\/strong> <em>8, <\/em>837-845.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2019<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\"> Kovtun, O.; Tomlinson, I. D.; Ferguson, R. S.; Rosenthal, S. J. Quantum Dots Reveal Heterogeneous Membrane Diffusivity and Dynamic Surface Density Polarization of Dopamine Transporter <em> PLOS One <\/em> <strong>2019, <\/strong> 1-25.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\"> McBride, J. R.; Rosenthal, S. J. Real Colloidal Quantum Dot Structures Revealed by High Resolution Analytical Electron Microscopy <em> J. Chem. Phys.<\/em> <strong>2019, <\/strong> <em>151, <\/em>160903.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">VanWie, T.; Wysocki, E.; McBride, J. R.; Rosenthal, S. J. Bright Cool White Emission from Ultrasmall CdSe Quantum Dots <em> Chem. Mater.<\/em> <strong>2019, <\/strong> <em>31, <\/em>8558-8562.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bradsher, C. E.; McBride, J. R.; Macdonald, J. E.; Rosenthal, S. J. Modulating Ferroelectric Response in Colloidal Semiconductor Nanocrystals through Cation Exchange <em> Chem. Mater.<\/em> <strong>2019, <\/strong> <em> 31, <\/em>4275-4281.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Kovtun, O.; Crescentini, T. M.; Rosenthal S. J.; Biotinylated-spiperone ligands for quantum dot labeling of the dopamine D2 receptor in live cell cultures <em> Bioorganic &amp; Medicinal Chemistry Letters<\/em> <strong>2019, <\/strong> <em> 29(8), <\/em>959-964.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J. Nanotechnology in Neuroscience Reveals Membrane Mobility Matters <em> ACS Chem. Neurosci.<\/em> <strong>2019,<\/strong> <em>10 (1)<\/em>, 30.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Thal, L. B.; Tomlinson, I. D.; Quinlan, M. A.; Kovtun, O., Blakely, R. D.; Rosenthal, S. J.; Single Quantum Dot Imaging Reveals PKC\u03b2-Dependent Alterations in Membrane Diffusion and Clustering of an Attention-Deficit Hyperactivity Disorder\/Autism\/Bipolar Disorder-Associated Dopamine Transporter Variant <em> ACS Chem. Neurosci.<\/em> <strong>2019,<\/strong> <em>10 (1) <\/em>, 460.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2018<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Soetan, N.; Puretzky, A.; Reid, K.; Boulesbaa, A.; Zarick, H. F.; Hunt, A.; Rose, O.; Rosenthal, S. J.; Geohegan, D. B.; Bardhan, R.; Ultrafast Spectral Dynamics of CsPb(Br<sub>x<\/sub>Cl<sub>1-x<\/sub>)<sub>3<\/sub> Mixed-Halide Nanocrystals <em>ACS Photonics<\/em> <strong>2018,<\/strong> <em>5(9)<\/em>, 3575-3583.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Reid, K.R.; McBride, J. R.; La Croix, A. D.; Freymeyer, N. J.; Click, S. M.; Macdonald, J. E.; Rosenthal, S. J.; Role of Surface Morphology on Exciton Recombination in Single Quantum Dot-in-Rods Revealed by Optical and Atomic Structure Correlation <em>ACS Nano<\/em> <strong>2018,<\/strong> <em>12 <\/em>, 11434.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Brubaker, C. D.; Frecker, T. M.; McBride, J. M.; Reid, K. R.; Jennings, G. K.; Rosenthal, S. J.; Adams, D. E.; Incorporation of Fluorescent Quantum Dots for 3D Printing and Additive Manufacturing Applications <em> J. Mater. Chem. C. <\/em> <strong> 2018, <\/strong> <em>6<\/em>, 7584-93.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bailey, D. M.; Catron, M. A.; Kovtun, O.; Macdonald, R. L.; Zhang, Q.; and Rosenthal, S. J.; Single Quantum Dot Tracking Reveals Serotonin Transporter Diffusion Dynamics are Correlated with Cholesterol-Sensitive Threonine 276 Phosphorylation Status in Primary Midbrain Neurons <em> ACS Chem. Neurosci. <\/em> <strong>2018,<\/strong> <em>9<\/em>, 2534.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Tomlinson, I. D.; Bailey, D. M.; Thal, L. B.; Ross, E. J.; Harris, L.; Frankland, M. P.; Ferguson, R. S.; Glaser, Z.; Greer IV, J.; Rosenthal, S. J.; Single Quantum Dot Tracking Illuminates Neuroscience at the Nanoscale <em> Chem. Phys. Lett. <strong>2018,<\/strong> <\/em><em>704<\/em>, 741.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Brubaker, C. D.; Davies, M. A; McBride, J. R.; Rosenthal, S. J.; Jennings, G. K.; Adams, D. E.; Nondestructive Evaluation and Detection of Defects in 3D-Printed Materials Using the Optical Properties of Gold Nanoparticles <em> ACS Appl. Nano Mater.<\/em> <strong>2018,<\/strong> <em>1<\/em>(3), 1377\u20131384.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Reid, K.R.; McBride, J. R.; Freymeyer, N. J.; Thal, L. B.; Rosenthal, S. J.; Chemical Structure, Ensemble and Single-Particle Spectroscopy of Thick-Shell InP\u2013ZnSe Quantum Dots <em>Nano Let.<\/em> <strong>2018,<\/strong> <em>18<\/em>(2), 705-716.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2017<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Fan, F.; Voznyy, O.; Sabatini, R.P.; Bicanic, K.T.; Adachi, M.M.; McBride, J.R.; Reid, K.R.; Park, Y.; Li, X.; Jain, A.; Quintero-Bermudez, R.; Saravanapavanantham, M.; Liu, M.; Korkusinski, M.; Hawrylak, P.; Klimov, V.I.; Rosenthal, S.J.; Hoogland, S.; Sargent, E.H.; Continuous-wave Lasing in Colloidal Quantum Dot Solids Enabled by Facet-selective Epitaxy <em>Nature<\/em> <strong>2017,<\/strong> <em>544<\/em>, 75\u201379.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">La Croix, A. D.; O&#8217;Hara, A.; Reid, K.R.; Orfield, N. J.; Pantelides, S. T.; Rosenthal, S.J.; Macdonald, J. E.; Design of a Hole Trapping Ligand.; <em>Nano Lett.<\/em> <strong>2017,<\/strong> <em>17<\/em> (2), 909\u2013914.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bailey, D. M., Kovtun, O., and Rosenthal, S. J. Antibody-conjugated single quantum dot tracking of membrane neurotransmitter transporters in primary neuronal cultures. Biomedical Nanotechnology, Springer Methods in Molecular Biology Series, Editors: Petrosko, S.H. and Day, E.R., 1570:165-177, 2017.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Thal, L. B., Bailey, D. M., Kovtun, O., and Rosenthal, S. J. Quantum dot toolbox in neurotransmitter transporter research. Chemical and Synthetic Approaches to Membrane Proteins, Springer Protocol Series, Editor: Shukla, A.K., 219-230, 2017.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2016<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Orfield, N. J.; McBride, J. R.; Wang, F.; Buck, M.R; Keene, J. D.; Reid, K.R.; Htoon, H.; Hollingsworth, J.A.; Rosenthal, S. J.; Quantum Yield Heterogeneity among Single Nonblinking Quantum Dots Reveled By Atomic Structure-Quantum Optics Correlation <em>ACS Nano<\/em> <strong>2016,<\/strong> <em>10<\/em> (2), 1960-1968.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Niezgoda, J. S.; Rosenthal, S. J.; Synthetic Strategies for Semiconductor Nanocrystals Expressing Localized Surface Plasmon Resonance <em>ChemPhysChem<\/em> <strong>2016,<\/strong> <em>17<\/em> (5), 645\u2013653.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Frecker, T.; Bailey, D.; McBride, J.R.; Arzeta-Ferrer, X.; Rosenthal, S. J.; Review\u2014Quantum Dots and Their Application in Lighting, Displays, and Biology <em>J. Solid State Sci. Technol. <\/em> <strong>2016,<\/strong> <em>5<\/em> (1) 3019-3031.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O., and Rosenthal, S.J. Ensemble and single quantum dot fluorescence methods in neurotransmitter transporter research. Neuromethods: Neurotransmitter Transporters, Springer Protocol Series, Editors: Sitte, H.H. and Boenish, H., 118: 129-141, 2016.<\/span><\/p>\n<p><span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2015<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Gizzie, E. A.; Niezgoda, J. S.; Maxwell, R. T.; Harris, A. G.; Jennings, G. K.; Rosenthal, S. J.; Cliffel, D. E.; Photosystem I-polyaniline\/TiO2 Solid-State Solar Cells: Simple Devices for Biohybrid Solar Energy Conversion <em>Energy Environ. Sci.<\/em> <strong>2015,<\/strong> <em>8<\/em>, 3572-3576<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Niezgoda, J. S.; Ng, A.; Poplawsky, J. D.; McBride, J. R.; Pennycook, S. J.; Rosenthal, S. J.; Visualization of Current and Mapping of Elements in Quantum Dot Solar Cells. <em>Adv. Funct. Mater.<\/em> <strong>2015,<\/strong> <em>26<\/em> (6), 895\u2013902.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Wrenn, T. L.; McBride, J. R.; Smith, N.J.; Rosenthal, S. J.;\u00a0Has the Sun Set on Quantum Dot-Sensitized Solar Cells?\u00a0<em>Nanomaterials and Nanotechnology<\/em> <strong>2015,<\/strong> 5, 16.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Wrenn, T. L.; McBride, J. R.; Mares, J.W.; Rosenthal, S. J.,\u00a0Ferroelectric Particles Generated through a Simple, Room-Temperature Treatment of CdSe Quantum Dots.\u00a0<cite>Chemistry of Materials<\/cite> <strong>2015<\/strong> <em>27<\/em> (11), 3817-3820.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Prasai, D.; Klots, A.R.; Newaz, A.; Niezgoda, J. S.; Orfield, N. J.; Escobar, C. A.; Wynn, A.; Efimov, A.; Jennings, G. K.; Rosenthal, S. J. and Bolotin, K. I.;\u00a0Electrical Control of near-Field Energy Transfer between Quantum Dots and Two-Dimensional Semiconductors.\u00a0<cite>Nano Letters<\/cite> <strong>2015<\/strong> <em>15<\/em>, 4374-4380.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Sakrikar, D.; Tomlinson, I. D.; Chang, J. C.; Arzeta-Ferrer, X.; Blakely, R. D.; Rosenthal, S. J.,\u00a0Single-Quantum Dot Tracking Reveals Altered Membrane Dynamics of an Attention Deficit\/Hyperactivity Disorder-Derived Dopamine Transporter Coding Variant. <em>ACS Chem. Neurosci.<\/em> <strong>2015,<\/strong> <em>6<\/em> (4), 526-534.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Orfield, N. J.; McBride, J. R.; Keene, J. D.; Rosenthal, S. J.,\u00a0Correlation of Atomic Structure and Photoluminescence of the Same Quantum Dot: Pinpointing Surface and Internal Defects that Inhibit Photoluminescence. <em>ACS Nano<\/em> <strong>2015,<\/strong> <em>9<\/em> (1), 831-839.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2014<\/span><br \/>\nKeene, J. D.; McBride, J. R.; Orfield, N. J.; Rosenthal, S. J., Elimination of Hole-Surface Overlap in Graded CdS<sub>x<\/sub>Se<sub>1-x <\/sub>Nanocrystals Revealed By Ultrafast Fluorescence Upconversion Spectroscopy. <em>ACS Nano<\/em> <strong>2014,<\/strong> <em>8<\/em> (10), 10665-10673.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Niezgoda, J. S.; Yap, E.; Keene, J. D.; McBride, J. R.; Rosenthal, S. J., Plasmonic Cu<sub>x<\/sub>In<sub>y<\/sub>S<sub>2<\/sub> Quantum Dots Make Better Photovoltaics Than Their non-Plasmonic Counterparts. <em>Nano. Lett.<\/em> <strong>2014,<\/strong> <em>14<\/em> (6), 3262-3269.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Jackson, S. R.; McBride, J. R.; Rosenthal, S. J.; Wright, D. W., Where&#8217;s the Silver? Imaging Trace Silver Coverage on the Surface of Gold Nanorods. <em>J. Am. Chem. Soc. <\/em><strong>2014,<\/strong> <em>136<\/em> (14), 5261-5263.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Ng, A.; Poplawsky, J. D.; Li, C.; Pennycook, S. J.; Rosenthal, S. J., Direct Electronic Property Imaging of a Nanocrystal-Based Photovoltaic Device by Electron Beam-Induced Current via Scanning Electron Microscopy. <em>J. Phys. Chem. Lett. <\/em><strong>2014,<\/strong> <em>5<\/em> (5), 856-860.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2013<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Beikmann, B. S.; Tomlinson, I. D.; Rosenthal, S. J.; Andrews, A. M., Serotonin Uptake Is Largely Mediated by Platelets versus Lymphocytes in Peripheral Blood Cells. <em>ACS Chem. Neurosci. <\/em><strong>2013,<\/strong> <em>4<\/em> (1), 161-170.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Rosenthal, S. J., A Bright Light to Reveal Mobility: Single Quantum Dot Tracking Reveals Membrane Dynamics and Cellular Mechanisms. <em>J. Phys. Chem. Lett. <\/em><strong>2013,<\/strong> <em>4<\/em> (17), 2858-2866.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Rosenthal, S. J., Quantum dot-based single-molecule microscopy for the study of protein dynamics. <em>Methods Mol. Biol. (N. Y., NY, U. S.) <\/em><strong>2013,<\/strong> <em>1026<\/em> (NanoBiotechnology Protocols), 71-84.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Rosenthal, S. J., Single quantum dot imaging in living cells. <em>Methods Mol. Biol. (N. Y., NY, U. S.) <\/em><strong>2013,<\/strong> <em>991<\/em> (Cellular and Subcellular Nanotechnology), 149-162.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Gussin, H. A.; Tomlinson, I. D.; Cao, D.; Qian, H.; Rosenthal, S. J.; Pepperberg, D. R., Quantum Dot Conjugates of GABA and Muscimol: Binding to \u03b11\u03b22\u03b32 and \u03c11 GABAA Receptors. <em>ACS Chem. Neurosci. <\/em><strong>2013,<\/strong> <em>4<\/em> (3), 435-443.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Harrell, S. M.; McBride, J. R.; Rosenthal, S. J., Synthesis of Ultrasmall and Magic-Sized CdSe Nanocrystals. <em>Chem. Mater. <\/em><strong>2013,<\/strong> <em>25<\/em> (8), 1199-1210.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kochemba, W. M.; Pickel, D. L.; Keene, J. D.; Rosenthal, S. J.; Sumpter, B. G.; Chen, J.; Kilbey, S. M., Correction to In Situ Formation of Pyridyl-Functionalized Poly(3-hexylthiophene)s via Quenching of the Grignard Metathesis Polymerization: Toward Ligands for Semiconductor Quantum Dots. <em>Chem. Mater. <\/em><strong>2013,<\/strong> <em>25<\/em> (1), 113.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Arzeta-Ferrer, X.; Rosenthal, S. J., Quantum dot approaches for target-based drug screening and multiplexed active biosensing. <em>Nanoscale <\/em><strong>2013,<\/strong> <em>5<\/em> (24), 12072-12081.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McBride, J. R.; Pennycook, T. J.; Pennycook, S. J.; Rosenthal, S. J., The Possibility and Implications of Dynamic Nanoparticle Surfaces. <em>ACS Nano <\/em><strong>2013,<\/strong> <em>7<\/em> (10), 8358-8365.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Wright, D. W.; Editors, <em>NanoBiotechnology Protocols, Second Edition. [In: Methods Mol. Biol. (N. Y., NY, U. S.), 2013; 1026]<\/em>. 2013; p 196 pp.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Yang, X.; Masadeh, A. S.; McBride, J. R.; Bozin, E. S.; Rosenthal, S. J.; Billinge, S. J. L., Confirmation of disordered structure of ultrasmall CdSe nanoparticles from X-ray atomic pair distribution function analysis. <em>Phys. Chem. Chem. Phys. <\/em><strong>2013,<\/strong> <em>15<\/em> (22), 8480-8486.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2012<\/span><br \/>\nChang, J. C.; Kovtun, O.; Blakely, R. D.; Rosenthal, S. J., Labeling of neuronal receptors and transporters with quantum dots. <em>Wiley Interdiscip. Rev. Nanomed. Nanobiotechnol. <\/em><strong>2012,<\/strong> <em>4<\/em> (6), 605-619.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Tomlinson, I. D.; Warnement, M. R.; Ustione, A.; Carneiro, A. M. D.; Piston, D. W.; Blakely, R. D.; Rosenthal, S. J., Single molecule analysis of serotonin transporter regulation using antagonist-conjugated quantum dots reveals restricted, p38 MAPK-dependent mobilization underlying uptake activation. <em>J. Neurosci. <\/em><strong>2012,<\/strong> <em>32<\/em> (26), 8919-8929.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Rosenthal, S. J., Visualization of Lipid Raft Membrane Compartmentalization in Living RN46A Neuronal Cells Using Single Quantum Dot Tracking. <em>ACS Chem. Neurosci. <\/em><strong>2012,<\/strong> <em>3<\/em> (10), 737-743.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Harrison, M. A.; Ng, A.; Hmelo, A. B.; Rosenthal, S. J., CdSSe Nanocrystals with Induced Chemical Composition Gradients. <em>Isr. J. Chem. <\/em><strong>2012,<\/strong> <em>52<\/em> (11-12), 1063-1072.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Ross, E. J.; Tomlinson, I. D.; Rosenthal, S. J., A flow cytometry-based dopamine transporter binding assay using antagonist-conjugated quantum dots. <em>Chem. Commun. (Cambridge, U. K.) <\/em><strong>2012,<\/strong> <em>48<\/em> (44), 5428-5430.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Rosenthal, S. J., Biological applications of photoluminescent semiconductor quantum dots. <em>Handb. Lumin. Semicond. Mater. <\/em><strong>2012<\/strong>, 411-437, 3 plates.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Niezgoda, J. S.; Harrison, M. A.; McBride, J. R.; Rosenthal, S. J., Novel Synthesis of Chalcopyrite Cu<sub>x<\/sub>In<sub>y<\/sub>S<sub>2<\/sub> Quantum Dots with Tunable Localized Surface Plasmon Resonances. <em>Chem. Mater. <\/em><strong>2012,<\/strong> <em>24<\/em> (16), 3294-3298.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Pennycook, T. J.; McBride, J. R.; Rosenthal, S. J.; Pennycook, S. J.; Pantelides, S. T., Dynamic Fluctuations in Ultrasmall Nanocrystals Induce White Light Emission. <em>Nano Lett. <\/em><strong>2012,<\/strong> <em>12<\/em> (6), 3038-3042.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Pennycook, T. J.; McBride, J. R.; Rosenthal, S. J.; Pennycook, S. J.; Pantelides, S. T., Dynamic fluctuations in ultrasmall nanocrystals induce white light emission [Erratum to document cited in CA156:679007]. <em>Nano Lett. <\/em><strong>2012,<\/strong> <em>12<\/em> (8), 4415.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosson, T. E.; Claiborne, S. M.; McBride, J. R.; Stratton, B. S.; Rosenthal, S. J., Bright White Light Emission from Ultrasmall Cadmium Selenide Nanocrystals. <em>J. Am. Chem. Soc. <\/em><strong>2012,<\/strong> <em>134<\/em> (19), 8006-8009.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Singh, Y. S.; Altieri, S. C.; Gilman, T. L.; Michael, H. M.; Tomlinson, I. D.; Rosenthal, S. J.; Swain, G. M.; Murphey-Corb, M. A.; Ferrell, R. E.; Andrews, A. M., Differential serotonin transport is linked to the rh5-HTTLPR in peripheral blood cells. <em>Transl. Psychiatry <\/em><strong>2012,<\/strong> <em>2<\/em> (Feb.), e77\/1-e77\/9, Se77\/1-Se77\/20.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Solis, E., Jr.; Zdravkovic, I.; Tomlinson, I. D.; Noskov, S. Y.; Rosenthal, S. J.; De Felice, L. J., 4-(4-(Dimethylamino)phenyl)-1-methylpyridinium (APP+) Is a Fluorescent Substrate for the Human Serotonin Transporter. <em>J. Biol. Chem. <\/em><strong>2012,<\/strong> <em>287<\/em> (12), 8852-8863.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2011<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Tomlinson, I. D.; Warnement, M. R.; Iwamoto, H.; DeFelice, L. J.; Blakely, R. D.; Rosenthal, S. J., A Fluorescence Displacement Assay for Antidepressant Drug Discovery Based on Ligand-Conjugated Quantum Dots. <em>J. Am. Chem. Soc. <\/em><strong>2011,<\/strong> <em>133<\/em> (44), 17528-17531.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chang, J. C.; Rosenthal, S. J., Real-time quantum dot tracking of single proteins. <em>Methods Mol. Biol. (N. Y., NY, U. S.) <\/em><strong>2011,<\/strong> <em>726<\/em> (Biomedical Nanotechnology), 51-62.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Dukes, A. D.; Samson, P. C.; Keene, J. D.; Davis, L. M.; Wikswo, J. P.; Rosenthal, S. J., Single-Nanocrystal Spectroscopy of White-Light-Emitting CdSe Nanocrystals. <em>J. Phys. Chem. A <\/em><strong>2011,<\/strong> <em>115<\/em> (16), 4076-4081.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Dukes, A. D., III; McBride, J. R.; Rosenthal, S. J., Luminescent quantum dots. <em>ECS Trans. <\/em><strong>2011,<\/strong> <em>33<\/em> (33, Luminescence and Display Materials), 3-16.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kovtun, O.; Tomlinson, I. D.; Sakrikar, D. S.; Chang, J. C.; Blakely, R. D.; Rosenthal, S. J., Visualization of the Cocaine-Sensitive Dopamine Transporter with Ligand-Conjugated Quantum Dots. <em>ACS Chem. Neurosci. <\/em><strong>2011,<\/strong> <em>2<\/em> (7), 370-378.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">MacKay, P. S.; Kremers, G.-J.; Kobukai, S.; Cobb, J. G.; Kuley, A.; Rosenthal, S. J.; Koktysh, D. S.; Gore, J. C.; Pham, W., Multimodal imaging of dendritic cells using a novel hybrid magneto-optical nanoprobe. <em>Nanomedicine (Philadelphia, PA, U. S.) <\/em><strong>2011,<\/strong> <em>7<\/em> (4), 489-496.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Chang, J. C.; Kovtun, O.; McBride, J. R.; Tomlinson, I. D., Biocompatible Quantum Dots for Biological Applications. <em>Chem. Biol. <\/em><strong>2011,<\/strong> <em>18<\/em> (1), 10-24.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Iwamoto, H.; Blakely, R. D.; Rosenthal, S. J., Biotin tethered homotryptamine derivatives: high affinity probes of the human serotonin transporter (hSERT). <em>Bioorg. Med. Chem. Lett. <\/em><strong>2011,<\/strong> <em>21<\/em> (6), 1678-1682.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2010<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Ciesielski, P. N.; Hijazi, F. M.; Scott, A. M.; Faulkner, C. J.; Beard, L.; Emmett, K.; Rosenthal, S. J.; Cliffel, D.; Kane Jennings, G., Photosystem I- based biohybrid photoelectrochemical cells. <em>Bioresour. Technol. <\/em><strong>2010,<\/strong> <em>101<\/em> (9), 3047-3053.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Dukes, A. D.; McBride, J. R.; Rosenthal, S. J., Synthesis of Magic-Sized CdSe and CdTe Nanocrystals with Diisooctylphosphinic Acid. <em>Chem. Mater. <\/em><strong>2010,<\/strong> <em>22<\/em> (23), 6402-6408.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Gosnell, J. D.; Rosenthal, S. J.; Weiss, S. M., White light emission characteristics of polymer-encapsulated CdSe nanocrystal films. <em>IEEE Photonics Technol. Lett. <\/em><strong>2010,<\/strong> <em>22<\/em> (8), 541-543.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Gussin, H. A.; Tomlinson, I. D.; Muni, N. J.; Little, D. M.; Qian, H.; Rosenthal, S. J.; Pepperberg, D. R., GABAC Receptor Binding of Quantum-Dot Conjugates of Variable Ligand Valency. <em>Bioconjugate Chem. <\/em><strong>2010,<\/strong> <em>21<\/em> (8), 1455-1464.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Koktysh, D. S.; McBride, J. R.; Geil, R. D.; Schmidt, B. W.; Rogers, B. R.; Rosenthal, S. J., Facile route to SnS nanocrystals and their characterization. <em>Mater. Sci. Eng., B <\/em><strong>2010,<\/strong> <em>170<\/em> (1-3), 117-122.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McBride, J. R.; Dukes, A. D., III; Schreuder, M. A.; Rosenthal, S. J., On ultrasmall nanocrystals. <em>Chem. Phys. Lett. <\/em><strong>2010,<\/strong> <em>498<\/em> (1-3), 1-9.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Pennycook, S. J.; Varela, M.; Chisholm, M. F.; Borisevich, A. Y.; Lupini, A. R.; van Benthem, K.; Oxley, M. P.; Luo, W.; McBride, J. R.; Rosenthal, S. J.; Oh, S. H.; Sales, D. L.; Molina, S. I.; Sohlberg, K.; Pantelides, S. T., Scanning transmission electron microscopy of nanostructures. <em>Oxford Handb. Nanosci. Technol. <\/em><strong>2010,<\/strong> <em>2<\/em>, 205-248.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Schreuder, M. A.; Xiao, K.; Ivanov, I. N.; Weiss, S. M.; Rosenthal, S. J., White Light-Emitting Diodes Based on Ultrasmall CdSe Nanocrystal Electroluminescence. <em>Nano Lett. <\/em><strong>2010,<\/strong> <em>10<\/em> (2), 573-576.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2009<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bowers, M. J., II; McBride, J. R.; Garrett, M. D.; Sammons, J. A.; Dukes, A. D., III; Schreuder, M. A.; Watt, T. L.; Lupini, A. R.; Pennycook, S. J.; Rosenthal, S. J., Structure and Ultrafast Dynamics of White-Light-Emitting CdSe Nanocrystals. <em>J. Am. Chem. Soc. <\/em><strong>2009,<\/strong> <em>131<\/em> (16), 5730-5731.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McBride, J. R.; Lupini, A. R.; Schreuder, M. A.; Smith, N. J.; Pennycook, S. J.; Rosenthal, S. J., Few-Layer Graphene as a Support Film for Transmission Electron Microscopy Imaging of Nanoparticles. <em>ACS Appl. Mater. Interfaces <\/em><strong>2009,<\/strong> <em>1<\/em> (12), 2886-2892.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Orndorff, R. L.; Rosenthal, S. J., Neurotoxin Quantum Dot Conjugates Detect Endogenous Targets Expressed in Live Cancer Cells. <em>Nano Lett. <\/em><strong>2009,<\/strong> <em>9<\/em> (7), 2589-2599.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Redigolo, M. L.; Koktysh, D. S.; van Benthem, K.; Rosenthal, S. J.; Dickerson, J. H., Europium sulfide nanoparticles in the sub-2 nm size regime. <em>Mater. Chem. Phys. <\/em><strong>2009,<\/strong> <em>115<\/em> (2-3), 526-529.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; McBride, J. R., Putting the squeeze on nanocrystals. <em>Nat. Nanotechnol. <\/em><strong>2009,<\/strong> <em>4<\/em> (1), 16-17.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Schreuder, M. A.; McBride, J. R.; Dukes, A. D.; Sammons, J. A.; Rosenthal, S. J., Control of Surface State Emission via Phosphonic Acid Modulation in Ultrasmall CdSe Nanocrystals: The Role of Ligand Electronegativity. <em>J. Phys. Chem. C <\/em><strong>2009,<\/strong> <em>113<\/em> (19), 8169-8176.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2008<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Dukes, A. D., III; Schreuder, M. A.; Sammons, J. A.; McBride, J. R.; Smith, N. J.; Rosenthal, S. J., Pinned emission from ultrasmall cadmium selenide nanocrystals. <em>J. Chem. Phys. <\/em><strong>2008,<\/strong> <em>129<\/em> (12), 121102\/1-121102\/4.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Garrett, M. D.; Bowers, M. J., II; McBride, J. R.; Orndorff, R. L.; Pennycook, S. J.; Rosenthal, S. J., Band Edge Dynamics in CdSe Nanocrystals Observed by Ultrafast Fluorescence Upconversion. <em>J. Phys. Chem. C <\/em><strong>2008,<\/strong> <em>112<\/em> (2), 436-442.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Garrett, M. D.; Bowers, M. J.; McBride, J. R.; Orndorff, R. L.; Pennycook, S. J.; Rosenthal, S. J., Band edge dynamics in CdSe nanocrystals observed by ultrafast fluorescence upconversion. [Erratum to document cited in CA148:224504]. <em>J. Phys. Chem. C <\/em><strong>2008,<\/strong> <em>112<\/em> (15), 6212.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Garrett, M. D.; Dukes, A. D., III; McBride, J. R.; Smith, N. J.; Pennycook, S. J.; Rosenthal, S. J., Band Edge Recombination in CdSe, CdS and CdS<sub>x<\/sub>Se<sub>1-x<\/sub> Alloy Nanocrystals Observed by Ultrafast Fluorescence Upconversion: The Effect of Surface Trap States. <em>J. Phys. Chem. C <\/em><strong>2008,<\/strong> <em>112<\/em> (33), 12736-12746.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kippeny, T. C.; Bowers, M. J., II; Dukes, A. D., III; McBride, J. R.; Orndorff, R. L.; Garrett, M. D.; Rosenthal, S. J., Effects of surface passivation on the exciton dynamics of CdSe nanocrystals as observed by ultrafast fluorescence upconversion spectroscopy. <em>J. Chem. Phys. <\/em><strong>2008,<\/strong> <em>128<\/em> (8), 084713\/1-084713\/7.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Narayanaswamy, A.; McBride, J.; Swafford, L. A.; Dhar, S.; Budai, J. D.; Feldman, L. C.; Rosenthal, S. J., Synthesis and characterization of porous TiO<sub>2<\/sub> with wormhole-like framework structure. <em>J. Porous Mater. <\/em><strong>2008,<\/strong> <em>15<\/em> (1), 21-27.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Orndorff, R. L.; Warnement, M. R.; Mason, J. N.; Blakely, R. D.; Rosenthal, S. J., Quantum Dot Ex Vivo Labeling of Neuromuscular Synapses. <em>Nano Lett. <\/em><strong>2008,<\/strong> <em>8<\/em> (3), 780-785.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Redigolo, M. L.; Koktysh, D. S.; Rosenthal, S. J.; Dickerson, J. H.; Gai, Z.; Gao, L.; Shen, J., Magnetization reversal in europium sulfide nanocrystals&#8221;. Response to comment. <em>Appl. Phys. Lett. <\/em><strong>2008,<\/strong> <em>92<\/em> (2), 026103\/1-026103\/2.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Schreuder, M. A.; Gosnell, J. D.; Smith, N. J.; Warnement, M. R.; Weiss, S. M.; Rosenthal, S. J., Encapsulated white-light CdSe nanocrystals as nanophosphors for solid-state lighting. <em>J. Mater. Chem. <\/em><strong>2008,<\/strong> <em>18<\/em> (9), 970-975.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Smith, N. J.; Emmett, K. J.; Rosenthal, S. J., Photovoltaic cells fabricated by electrophoretic deposition of CdSe nanocrystals. <em>Appl. Phys. Lett. <\/em><strong>2008,<\/strong> <em>93<\/em> (4), 043504\/1-043504\/3.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Warnement, M. R.; Tomlinson, I. D.; Chang, J. C.; Schreuder, M. A.; Luckabaugh, C. M.; Rosenthal, S. J., Controlling the Reactivity of Ampiphilic Quantum Dots in Biological Assays through Hydrophobic Assembly of Custom PEG Derivatives. <em>Bioconjugate Chem. <\/em><strong>2008,<\/strong> <em>19<\/em> (7), 1404-1413.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2007<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Addae-Mensah, K. A.; Kassebaum, N. J.; Bowers, M. J.; Reiserer, R. S.; Rosenthal, S. J.; Moore, P. E.; Wikswo, J. P., A flexible, quantum dot-labeled cantilever post array for studying cellular microforces. <em>Sens. Actuators, A <\/em><strong>2007,<\/strong> <em>136<\/em> (1), 385-397.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Koktysh, D. S.; McBride, J. R.; Dixit, S. K.; Feldman, L. C.; Rosenthal, S. J., PbS\/PbSe structures with core-shell type morphology synthesized from PbS nanocrystals. <em>Nanotechnology <\/em><strong>2007,<\/strong> <em>18<\/em> (49), 495607\/1-495607\/4.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Koktysh, D. S.; McBride, J. R.; Rosenthal, S. J., Synthesis of SnS nanocrystals by the solvothermal decomposition of a single source precursor. <em>Nanoscale Res. Lett. <\/em><strong>2007,<\/strong> <em>2<\/em> (3), 144-148.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Redigolo, M. L.; Koktysh, D. S.; Rosenthal, S. J.; Dickerson, J. H., Physical properties of quantum-confined europium sulfide nanocrystals. <em>Phys. Status Solidi C <\/em><strong>2007,<\/strong> <em>4<\/em> (2), 406-408.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; McBride, J.; Pennycook, S. J.; Feldman, L. C., Synthesis, surface studies, composition and structural characterization of CdSe, core\/shell and biologically active nanocrystals. <em>Surf. Sci. Rep. <\/em><strong>2007,<\/strong> <em>62<\/em> (4), 111-157.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson Ian, D.; Gussin Helene, A.; Little Deborah, M.; Warnement Michael, R.; Qian, H.; Pepperberg David, R.; Rosenthal Sandra, J., Imaging GABAc receptors with ligand-conjugated quantum dots. <em>J Biomed Biotechnol <\/em><strong>2007,<\/strong> <em>2007<\/em>, 76514.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Warnerment, M. R.; Mason, J. N.; Vergne, M. J.; Hercules, D. M.; Blakely, R. D.; Rosenthal, S. J., Synthesis and characterization of a pegylated derivative of 3-(1,2,3,6-tetrahydro-pyridin-4yl)-1H-indole (IDT199): A high affinity SERT ligand for conjugation to quantum dots. <em>Bioorg. Med. Chem. Lett. <\/em><strong>2007,<\/strong> <em>17<\/em> (20), 5656-5660.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Warnement, M. R.; Tomlinson, I. D.; Rosenthal, S. J., Fluorescent imaging applications of quantum dot probes. <em>Curr. Nanosci. <\/em><strong>2007,<\/strong> <em>3<\/em> (4), 273-284.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2006<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Gussin, H. A.; Tomlinson, I. D.; Little, D. M.; Warnement, M. R.; Qian, H.; Rosenthal, S. J.; Pepperberg, D. R., Binding of Muscimol-Conjugated Quantum Dots to GABAC Receptors. <em>J. Am. Chem. Soc. <\/em><strong>2006,<\/strong> <em>128<\/em> (49), 15701-15713.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McBride, J.; Treadway, J.; Feldman, L. C.; Pennycook, S. J.; Rosenthal, S. J., Structural Basis for Near Unity Quantum Yield Core\/Shell Nanostructures. <em>Nano Lett. <\/em><strong>2006,<\/strong> <em>6<\/em> (7), 1496-1501.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Redigolo, M. L.; Koktysh, D. S.; Rosenthal, S. J.; Dickerson, J. H.; Gai, Z.; Gao, L.; Shen, J., Magnetization reversal in europium sulfide nanocrystals. <em>Appl. Phys. Lett. <\/em><strong>2006,<\/strong> <em>89<\/em> (22), 222501\/1-222501\/3.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Swafford, L. A.; Weigand, L. A.; Bowers, M. J., II; McBride, J. R.; Rapaport, J. L.; Watt, T. L.; Dixit, S. K.; Feldman, L. C.; Rosenthal, S. J., Homogeneously Alloyed CdS<sub>x<\/sub>Se<sub>1-x<\/sub> Nanocrystals: Synthesis, Characterization, and Composition\/Size-Dependent Band Gap. <em>J. Am. Chem. Soc. <\/em><strong>2006,<\/strong> <em>128<\/em> (37), 12299-12306.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Mason, J. N.; Blakely, R. D.; Rosenthal, S. J., High affinity inhibitors of the dopamine transporter (DAT): Novel biotinylated ligands for conjugation to quantum dots. <em>Bioorg. Med. Chem. Lett. <\/em><strong>2006,<\/strong> <em>16<\/em> (17), 4664-4667.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Gies, A. P.; Gresch, P. J.; Dillard, J.; Orndorff, R. L.; Sanders-Bush, E.; Hercules, D. M.; Rosenthal, S. J., Universal polyethylene glycol linkers for attaching receptor ligands to quantum dots. <em>Bioorg. Med. Chem. Lett. <\/em><strong>2006,<\/strong> <em>16<\/em> (24), 6262-6266.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Warnement Michael, R.; Faley Shannon, L.; Wikswo John, P.; Rosenthal Sandra, J., Quantum dot probes for monitoring dynamic cellular response: reporters of T cell activation. <em>IEEE Trans Nanobioscience <\/em><strong>2006,<\/strong> <em>5<\/em> (4), 268-72.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Wijtmans, M.; Rosenthal, S. J.; Zwanenburg, B.; Porter, N. A., Visible Light Excitation of CdSe Nanocrystals Triggers the Release of Coumarin from Cinnamate Surface Ligands. <em>J. Am. Chem. Soc. <\/em><strong>2006,<\/strong> <em>128<\/em> (35), 11720-11726.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2005<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bentzen, E. L.; Tomlinson, I. D.; Mason, J.; Gresch, P.; Warnement, M. R.; Wright, D.; Sanders-Bush, E.; Blakely, R.; Rosenthal, S. J., Surface Modification To Reduce Nonspecific Binding of Quantum Dots in Live Cell Assays. <\/span><em>Bioconjugate Chem. <\/em><strong>2005,<\/strong> <em>16<\/em> (6), 1488-1494.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bowers, M. J., II; McBride, J. R.; Rosenthal, S. J., White-Light Emission from Magic-Sized Cadmium Selenide Nanocrystals. <em>J. Am. Chem. Soc. <\/em><strong>2005,<\/strong> <em>127<\/em> (44), 15378-15379.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Hertel, T.; Hagen, A.; Talalaev, V.; Arnold, K.; Hennrich, F.; Kappes, M.; Rosenthal, S.; McBride, J.; Ulbricht, H.; Flahaut, E., Spectroscopy of Single- and Double-Wall Carbon Nanotubes in Different Environments. <em>Nano Lett. <\/em><strong>2005,<\/strong> <em>5<\/em> (3), 511-514.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Mason, J. N.; Farmer, H.; Tomlinson, I. D.; Schwartz, J. W.; Savchenko, V.; DeFelice, L. J.; Rosenthal, S. J.; Blakely, R. D., Novel fluorescence-based approaches for the study of biogenic amine transporter localization, activity, and regulation. <em>J. Neurosci. Methods <\/em><strong>2005,<\/strong> <em>143<\/em> (1), 3-25.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Mason, J. N.; Tomlinson, I. D.; Rosenthal, S. J.; Blakely, R. D., Labeling cell-surface proteins via antibody quantum dot streptavidin conjugates. <em>Methods Mol. Biol. (Totowa, NJ, U. S.) <\/em><strong>2005,<\/strong> <em>303<\/em> (NanoBiotechnology Protocols), 35-50.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Wright, D. W.; Editors, <em>Nanobiotechnology Protocols<\/em>. 2005; p 228 pp.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Mason, J. N.; Blakely, R. D.; Rosenthal, S. J., Inhibitors of the serotonin transporter protein (SERT): The design and synthesis of biotinylated derivatives of 3-(1,2,3,6-tetrahydropyridin-4-yl)-1H-indoles. High-affinity serotonergic ligands for conjugation with quantum dots. <em>Bioorg. Med. Chem. Lett. <\/em><strong>2005,<\/strong> <em>15<\/em> (23), 5307-5310.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Mason, J. N.; Blakely, R. D.; Rosenthal, S. J., Peptide-conjugated quantum dots: Imaging the angiotensin type 1 receptor in living cells. <em>Methods Mol. Biol. (Totowa, NJ, U. S.) <\/em><strong>2005,<\/strong> <em>303<\/em> (NanoBiotechnology Protocols), 51-60.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Warnement, M. R.; Rosenthal, S. J., Fluorescent quantum dots: properties and applications. <em>Springer Ser. Fluoresc. <\/em><strong>2005,<\/strong> <em>3<\/em> (Fluorescence Spectroscopy in Biology), 263-274.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2004<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">McBride, J. R.; Kippeny, T. C.; Pennycook, S. J.; Rosenthal, S. J., Aberration-corrected Z-contrast scanning transmission electron microscopy of CdSe nanocrystals. <em>Nano Lett. <\/em><strong>2004,<\/strong> <em>4<\/em> (7), 1279-1283.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2003<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Pennycook, S. J.; Lupini, A. R.; Kadavanich, A.; McBride, J. R.; Rosenthal, S. J.; Puetter, R. C.; Yahil, A.; Krivanek, O. L.; Dellby, N.; Nellist, P. D. L.; Duscher, G.; Wang, L. G.; Pantelides, S. T., Aberration-corrected scanning transmission electron microscopy: The potential for nano- and interface science. <em>Z. Metallkd. <\/em><strong>2003,<\/strong> <em>94<\/em> (4), 350-357.<\/span><\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Swafford, L. A.; Rosenthal, S. J., Molecular- and nanocrystal-based photovoltaics. <em>Mol. Nanoelectron. <\/em><strong>2003<\/strong>, 263-290.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Mason, J.; Burton, J. N.; Blakely, R.; Rosenthal, S. J., The design and synthesis of novel derivatives of the dopamine uptake inhibitors GBR 12909 and GBR 12935. High-affinity dopaminergic ligands for conjugation with highly fluorescent cadmium selenide\/zinc sulfide core\/shell nanocrystals. <em>Tetrahedron <\/em><strong>2003,<\/strong> <em>59<\/em> (40), 8035-8047.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2002<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Erwin, M. M.; McBride, J.; Kadavanich, A. V.; Rosenthal, S. J., Effects of impurities on the optical properties of poly-3-hexylthiophene thin films. <em>Thin Solid Films <\/em><strong>2002,<\/strong> <em>409<\/em> (2), 198-205.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kippeny, T.; Swafford, L. A.; Rosenthal, S. J., Semiconductor nanocrystals: A powerful visual aid for introducing the particle in a box. <em>J. Chem. Educ. <\/em><strong>2002,<\/strong> <em>79<\/em> (9), 1094-1100.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Tomlinson, I.; Adkins, E. M.; Schroeter, S.; Adams, S.; Swafford, L.; McBride, J.; Wang, Y.; DeFelice, L. J.; Blakely, R. D., Targeting Cell Surface Receptors with Ligand-Conjugated Nanocrystals. <em>J. Am. Chem. Soc. <\/em><strong>2002,<\/strong> <em>124<\/em> (17), 4586-4594.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Grey, J. L.; Rosenthal, S. J., A synthesis of 6-(2,5-dimethoxy-4-(2-aminopropyl)phenyl)hexylthiol. A ligand for conjugation with fluorescent cadmium selenide\/zinc sulfide core\/shell nanocrystals and biological imaging. <em>Molecules <\/em><strong>2002,<\/strong> <em>7<\/em> (11), 777-790.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Tomlinson, I. D.; Kippeny, T.; Swafford, L.; Siddiqui, N. H.; Rosenthal, S. J., Novel polyethylene glycol derivatives of melatonin and serotonin. Ligands for conjugation to fluorescent cadmium selenide\/zinc sulfide core shells and nanocrystals. <em>J. Chem. Res., Synop. <\/em><strong>2002,<\/strong> (5), 527-539.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2001<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Erwin, M. M.; Kadavanich, A. V.; McBride, J.; Kippeny, T.; Pennycook, S.; Rosenthal, S. J., Material characterization of a nanocrystal based photovoltaic device. <em>Eur. Phys. J. D <\/em><strong>2001,<\/strong> <em>16<\/em> (1-3), 275-277.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Kadavanich, A. V.; Kippeny, T. C.; Erwin, M. M.; Pennycook, S. J.; Rosenthal, S. J., Sublattice Resolution Structural and Chemical Analysis of Individual CdSe Nanocrystals Using Atomic Number Contrast Scanning Transmission Electron Microscopy and Electron Energy Loss Spectroscopy. <em>J. Phys. Chem. B <\/em><strong>2001,<\/strong> <em>105<\/em> (2), 361-369.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J., Bar-coding biomolecules with fluorescent nanocrystals. <em>Nat. Biotechnol. <\/em><strong>2001,<\/strong> <em>19<\/em> (7), 621-622.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Taylor, J.; Kippeny, T.; Rosenthal, S. J., Surface stoichiometry of CdSe nanocrystals determined by Rutherford backscattering spectroscopy. <em>J. Cluster Sci. <\/em><strong>2001,<\/strong> <em>12<\/em> (4), 571-582.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Underwood, D. F.; Kippeny, T.; Rosenthal, S. J., Charge carrier dynamics in CdSe nanocrystals: implications for the use of quantum dots in novel photovoltaics. <em>Eur. Phys. J. D <\/em><strong>2001,<\/strong> <em>16<\/em> (1-3), 241-244.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Underwood, D. F.; Kippeny, T.; Ward, R.; Kadavanich, A. V.; Taylor, J.; Rosenthal, S. J., Size and surface dependence of ultrafast carrier dynamics in CdSe quantum dots determined by fluorescence upconversion spectroscopy. <em>Springer Ser. Chem. Phys. <\/em><strong>2001,<\/strong> <em>66<\/em> (Ultrafast Phenomena XII), 375-377.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Underwood, D. F.; Kippeny, T.; Rosenthal, S. J., Ultrafast Carrier Dynamics in CdSe Nanocrystals Determined by Femtosecond Fluorescence Upconversion Spectroscopy. <em>J. Phys. Chem. B <\/em><strong>2001,<\/strong> <em>105<\/em> (2), 436-443.<br \/>\n<span style=\"color: #000000;font-family: Georgia, Times, serif;font-size: 1.5em;line-height: 1.55em\">2000 and earlier<\/span><br \/>\n<span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Bardeen, C. J.; Rosenthal, S. J.; Shank, C. V., Ultrafast Solvation Processes in Polar Liquids Probed with Large Organic Molecules. <em>J. Phys. Chem. A <\/em><strong>1999,<\/strong> <em>103<\/em> (49), 10506-10516.<\/span><\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Huang, M. B.; McDonald, K.; Keay, J. C.; Wang, Y. Q.; Rosenthal, S. J.; Weller, R. A.; Feldman, L. C., Suppression of penetration of aluminum into 8-hydroxyquinoline aluminum via a thin oxide barrier. <em>Appl. Phys. Lett. <\/em><strong>1998,<\/strong> <em>73<\/em> (20), 2914-2916.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Yeh, A. T.; Alivisatos, A. P.; Shank, C. V., Size dependent absorption anisotropy measurements of CdSe nanocrystals: symmetry assignments for the lowest electronic states. <em>Springer Ser. Chem. Phys. <\/em><strong>1996,<\/strong> <em>62<\/em> (Ultrafast Phenomena X), 431-432.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Vajda, S.; Jimenez, R.; Rosenthal, S. J.; Fidler, V.; Fleming, G. R.; Castner, E. W., Jr., Femtosecond to nanosecond solvation dynamics in pure water and inside the \u03b3-cyclodextrin cavity. <em>J. Chem. Soc., Faraday Trans. <\/em><strong>1995,<\/strong> <em>91<\/em> (5), 867-73.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Mittleman, D. M.; Rosenthal, S. J.; Schoenlein, R. W.; Yeh, A. T.; Shank, C. V.; Shiang, J. J.; Colvin, V. L.; Grubbs, R. A.; Alivisatos, A. P., Ultrafast dynamics in CdSe nanocrystals. <em>Springer Ser. Chem. Phys. <\/em><strong>1994,<\/strong> <em>60<\/em> (Ultrafast Phenomena IX), 351-3.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Schwartz, B. J.; Rossky, P. J., Calculated photon echo signals for the aqueous solvated electron. The origin of ultrafast electronic dephasing. <em>Chem. Phys. Lett. <\/em><strong>1994,<\/strong> <em>229<\/em> (4-5), 443-8.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Jimenez, R.; Fleming, G. R.; Kumar, P. V.; Maroncelli, M., Solvation dynamics in methanol: experimental and molecular dynamics simulation studies. <em>J. Mol. Liq. <\/em><strong>1994,<\/strong> <em>60<\/em>, 25-56.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Wang, Q.; Schoenlein, R. W.; Peteanu, L. A.; Rosenthal, S. J.; Mathies, R. A.; Shank, C. V., Femtosecond vibrationally coherent photochemistry in the primary event in vision. <em>Springer Ser. Chem. Phys. <\/em><strong>1994,<\/strong> <em>60<\/em> (Ultrafast Phenomena IX), 425-6.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Cho, M.; Hu, Y.; Rosenthal, S. J.; Todd, D. C.; Du, M.; Fleming, G. R., Friction effects and barrier crossing. <em>Act. Barrier Crossing <\/em><strong>1993<\/strong>, 143-62.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Scherer, N. F.; Cho, M.; Xie, X.; Schmidt, M. E.; Fleming, G. R., Femtosecond solvent dynamics studied by time-resolved fluorescence and transient birefringence. <em>Springer Ser. Chem. Phys. <\/em><strong>1993,<\/strong> <em>55<\/em> (Ultrafast Phenomena VIII), 616-17.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Du, M.; Xie, X.; DiMagno, T. J.; Schmidt, M. E.; Norris, J. R.; Fleming, G. R., Femtosecond spontaneous emission studies of photosynthetic bacterial reaction centers. <em>Springer Ser. Chem. Phys. <\/em><strong>1993,<\/strong> <em>55<\/em> (Ultrafast Phenomena VIII), 539-40.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Chan, C. K.; Rosenthal, S. J.; DiMagno, T. J.; Chen, L. X. Q.; Xie, X.; Norris, J. R.; Fleming, G. R., Primary charge separation in photosynthetic bacterial reaction centers and femtosecond solvation dynamics. <em>Dyn. Mech. Photoinduced Electron Transfer Relat. Phenom., Proc. Yamada Conf., 29th <\/em><strong>1992<\/strong>, 105-22.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Cho, M.; Rosenthal, S. J.; Scherer, N. F.; Ziegler, L. D.; Fleming, G. R., Ultrafast solvent dynamics: connection between time resolved fluorescence and optical Kerr measurements. <em>J. Chem. Phys. <\/em><strong>1992,<\/strong> <em>96<\/em> (7), 5033-8.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">DiMagno, T. J.; Rosenthal, S. J.; Xie, X.; Du, M.; Chan, C. K.; Hanson, D.; Schiffer, M.; Norris, J. R.; Fleming, G. R., Recent experimental results for the initial step of bacterial photosynthesis. <em>NATO ASI Ser., Ser. A <\/em><strong>1992,<\/strong> <em>237<\/em> (Photosynthetic Bacterial Reaction Center II), 209-17.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Hansen, J. E.; Rosenthal, S. J.; Fleming, G. R., Subpicosecond fluorescence depolarization studies of tryptophan and tryptophanyl residues of proteins. <em>J. Phys. Chem. <\/em><strong>1992,<\/strong> <em>96<\/em> (7), 3034-40.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Rosenthal, S. J.; Xie, X.; Du, M.; Fleming, G. R., Femtosecond solvation dynamics in acetonitrile: observation of the inertial contribution to the solvent response. <em>J. Chem. Phys. <\/em><strong>1991,<\/strong> <em>95<\/em> (6), 4715-18.<\/span><\/p>\n<p><span style=\"color: #666666;font-family: Georgia, Times, serif;font-size: 1em;line-height: 1em\">Todd, D. C.; Jean, J. M.; Rosenthal, S. J.; Ruggiero, A. J.; Yang, D.; Fleming, G. R., Fluorescence upconversion study of cis-stilbene isomerization. <em>J. Chem. Phys. <\/em><strong>1990,<\/strong> <em>93<\/em> (12), 8658-68.<\/span><\/p>\n","protected":false},"excerpt":{"rendered":"<p>2024 Torres, R.; Thal, L.B.; McBride, J.R.; Cohen, B.E.; Rosenthal, S.J. Quantum Dot Fluorescent Imaging: Using Atomic Structure Correlation Studies to Improve Photophysical Properties J. Phys Chem C 2024. 2023 Click, S.M.; Koziel, A.C.; Torres, R.; Flores, S.; McBride, J.R.; Rosenthal, S.J. Quantitative morphological analysis of InP-based quantum dots reveals new insights into the complexity&#8230;<\/p>\n","protected":false},"author":2853,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"open","ping_status":"closed","template":"page_onecolumn.php","meta":{"footnotes":""},"tags":[],"class_list":["post-6","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/pages\/6","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/users\/2853"}],"replies":[{"embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/comments?post=6"}],"version-history":[{"count":67,"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/pages\/6\/revisions"}],"predecessor-version":[{"id":1135,"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/pages\/6\/revisions\/1135"}],"wp:attachment":[{"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/media?parent=6"}],"wp:term":[{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/rosenthalresearch\/wp-json\/wp\/v2\/tags?post=6"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}