{"id":3578,"date":"2022-02-15T17:48:54","date_gmt":"2022-02-15T22:48:54","guid":{"rendered":"https:\/\/my.vanderbilt.edu\/vinsenews\/?p=3578"},"modified":"2023-04-11T14:03:15","modified_gmt":"2023-04-11T19:03:15","slug":"22nd-annual-nanoscience-nanotechnology-forum-nanoday-11422-keynote-dmitri-basov","status":"publish","type":"post","link":"https:\/\/my.vanderbilt.edu\/vinsenews\/2022\/02\/22nd-annual-nanoscience-nanotechnology-forum-nanoday-11422-keynote-dmitri-basov\/","title":{"rendered":"22nd Annual Nanoscience &amp; Nanotechnology Forum NanoDay! 11\/4\/22 &#8211; Keynote Dmitri Basov"},"content":{"rendered":"<p>A yearly forum for faculty, postdocs, and students engaged in nanoscience and nanotechnology research.\u00a0<a href=\"https:\/\/forms.gle\/oQCva5wZw1g67J9n6\">Register here\u00a0<\/a><\/p>\n<h1>Schedule<\/h1>\n<p><span style=\"text-decoration: underline\">Featheringill Hall<\/span><br \/>\n11:30\u00a0<b>LUNCH <\/b><em>begins<\/em><br \/>\n12:00\u00a0<b>POSTER SESSION<\/b><br \/>\n<span style=\"text-decoration: underline\">Buttrick Hall, Room 101<\/span><br \/>\n2:30\u00a0\u00a0<i>Opening Remarks\u00a0<\/i><strong>Dr. Sharon M. Weiss<\/strong><b><br \/>\n<\/b>2:40\u00a0<em>New Strategies for Microdevice Fabrication using Parylene-coated 3D Prints <\/em><strong>Dr.\u00a0<\/strong><strong>Ethan Lippmann<\/strong><br \/>\n3:00\u00a0<em>Exploring the Role of Anisotropy and Strong Coupling in Driving Infrared Nanophotonics<\/em>\u00a0<strong>Dr.\u00a0Josh Caldwell<\/strong><br \/>\n3:20\u00a0 <em>Nano with Atomic Precision: Insights from Computation <\/em><strong>Dr. De-en Jiang<\/strong><b><br \/>\n<\/b>3:40\u00a0<em>Minimizing the Reorganization Energy of Cobalt Redox Mediators Maximizes Charge Transfer Rates from Quantum Dots<\/em> <strong>Madeleine Fort<\/strong><br \/>\n<span style=\"text-decoration: underline\">Featheringill Hall<\/span><br \/>\n4:00\u00a0<strong>BREAK<\/strong> <em>refreshments served<\/em><br \/>\n4:30\u00a0\u00a0<b>KEYNOTE LECTURE <\/b><em>Shedding Nano-light on Quantum Materials<\/em><i>\u00a0<\/i><b>Dr.\u00a0Dmitri N. Basov<\/b><br \/>\n5:30\u00a0\u00a0<b>RECEPTION <\/b><i>Poster Awards \/ VINSE Jacket<\/i><i> Drawing<\/i><\/p>\n<h1>Keynote Speaker<\/h1>\n<p><strong><a href=\"https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-3579 alignright\" src=\"https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov-433x650.jpg\" alt=\"Basov\" width=\"300\" height=\"450\" srcset=\"https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov-433x650.jpg 433w, https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov-200x300.jpg 200w, https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov-768x1152.jpg 768w, https:\/\/cdn.vanderbilt.edu\/t2-my\/my-prd\/wp-content\/uploads\/sites\/1669\/2022\/02\/Basov.jpg 1400w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><\/a>Bio.<\/strong> Dmitri N. Basov (PhD 1991) is a Higgins professor and Chair of the <a href=\"http:\/\/infrared.cni.columbia.edu\">Department of Physics at Columbia University<\/a>, the Director of the DOE Energy Frontiers Research Center on <a href=\"https:\/\/quantum-materials.columbia.edu\/\">Programmable Quantum Materials<\/a> and co-director of Max Planck Society \u2013 New York Center for Nonequilibrium Quantum Phenomena. He has served as a professor (1997-2016) and Chair (2010-2015) of Physics, University of California San Diego. Research interests include: physics of quantum materials, superconductivity, two-dimensional materials, infrared nano-optics. Prizes and recognitions: Sloan Fellowship (1999), Genzel Prize (2014), Humboldt research award (2009), Frank Isakson Prize, American Physical Society (2012), <a href=\"https:\/\/www.moore.org\/initiative-strategy-detail?initiativeId=emergent-phenomena-in-quantum-systems\">Moore Investigator<\/a> (2014, 2020), K.J. Button Prize (2019), <a href=\"https:\/\/basicresearch.defense.gov\/Programs\/Vannevar-Bush-Faculty-Fellowship\/\">Vannevar Bush Faculty Fellowship<\/a> (U.S. Department of Defense, 2019), top 1% of highly cited physicists (2018-2021), National Academy of Sciences (2020).<\/p>\n<h1>Poster Session<\/h1>\n<ol>\n<li>Sustainable Carbon Nanotube Growth from CO2: Scale-Up Design of Post-Growth Processing<br \/>\n<strong>Grace Jones<\/strong>, undergraduate, Chemistry (Douglas)<\/li>\n<li>Nanomedicine Drug Combinations for the Treatment of Tumor-Induced Bone Disease<br \/>\n<strong>Kristopher Castillo<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Inversely designed mid-infrared light source<br \/>\n<strong>Mingze He<\/strong>, Mechanical Engineering (Caldwell)<\/li>\n<li>Developing a Low-Cost In\u00a0Vitro Blood-Brain Barrier\u00a0to Streamline Disease\u00a0Modeling<br \/>\n<strong>Kelly Richardson<\/strong>, Chemistry (Cliffel\/Wright)<\/li>\n<li>Versatile Strategy for Design and Fabrication of Thin Film Composite Membranes<br \/>\n<strong>Zane Parkerson<\/strong>, Chemical and Biomolecular Engineering (Jennings)<\/li>\n<li>Nanospectroscopy of Quantum Point Defects<br \/>\n<strong>Ryan Kowalski<\/strong>, Interdisciplinary Materials Science (Caldwell)<\/li>\n<li>Single Cell Activation Requirements of T Cells in Relation to Pancreatic \u03b2Cell Destruction in Type 1 Diabetes<br \/>\n<strong>Elizabeth Holliday<\/strong>, Chemical and Biomolecular Engineering (Lang)<\/li>\n<li>A Nanocarrier Vaccine Platform for Co-Delivery of Peptide Neoantigens and Synergistic Adjuvants<br \/>\n<strong>Jessalyn Baljon<\/strong>, Biomedical Engineering (Wilson)<\/li>\n<li>Where\u2019d the sulfur go? How sodium oleate results in sulfur deficient nanoparticles<br \/>\n<strong>Andrey Shults<\/strong>, Chemistry (Macdonald)<\/li>\n<li>Superhydrophobic Array Devices for High Throughput Culture of 3D Cancer Models<br \/>\n<strong>Maria Lopez Cavestany<\/strong>, Biomedical Engineering (King)<\/li>\n<li>Engineering Electromagnetic Field Distribution and Resonance Quality Factor Using Slotted Quasi-BIC Metasurfaces<br \/>\n<strong>Sen Yang<\/strong>, Interdisciplinary Materials Science (Ndukaife)<\/li>\n<li>In vivo delivery of an MK2 inhibitory peptide to prevent restenosis after peripheral angioplasty<br \/>\n<strong>William Tierney<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Material identification for cultural heritage artifacts using nano-FTIR<br \/>\n<strong>Katja Diaz-Granados<\/strong>, Interdisciplinary Materials Science (Caldwell)<\/li>\n<li>Vinculin mediates migration and bioenergetics in breast cancer<br \/>\n<strong>Emily Fabiano<\/strong>, Biomedical Engineering (Reinhart-King)<\/li>\n<li>Wireless Miniature Robots for Biomedical Applications<br \/>\n<strong>Xiaoguang Dong<\/strong>, professor, Mechanical Engineering (Dong)<\/li>\n<li>Metabolic heterogeneity of extracellular vesicles released by cancer migratory subpopulations<br \/>\n<strong>Chelsea Faith Mariano<\/strong>, Biomedical Engineering (Reinhart-King)<\/li>\n<li>Polymeric Drug Conjugates for STING Pathway Activation to Improve Cancer Immunotherapy<br \/>\n<strong>Taylor Sheehy<\/strong>, Biomedical Engineering (Wilson)<\/li>\n<li>Shear-thinning, Nanoparticle-based Hydrogels as an Injectable Delivery Platform for Repair of Chronic Diabetic Skin Wounds<br \/>\n<strong>Mariah Bezold<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Evaluating Surface Properties of Multifunctional Energy Minimizing Surfaces Using Molecular Dynamics Simulations<br \/>\n<strong>Cal Craven<\/strong>, Interdisciplinary Materials Science (McCabe)<\/li>\n<li>Scaling Microfluidic Throughput for Mechanotypic Genome-Scale CRISPR Knockout Screen<br \/>\n<strong>Katie Young<\/strong>, postdoctoral associate, Biomedical Engineering (Reinhart-King)<\/li>\n<li>Low Power Structural Color Tuning in a-Si Dielectric Metasurface via Li ion insertion<br \/>\n<strong>Elena Kovalik<\/strong>, Interdisciplinary Materials Science (Valentine)<\/li>\n<li>Enhanced T Cell Activation via Fluid Shear Stress<br \/>\n<strong>Nicole Sarna<\/strong>, Biomedical Engineering (King)<\/li>\n<li>Collective Phonon\u2212Polaritonic Modes in Silicon Carbide Subarrays<br \/>\n<strong>Guanyu Lu<\/strong>, Mechanical Engineering (Caldwell)<\/li>\n<li>Evaluating the Mechanisms of Yoda1 Sensitization of TRAIL-Mediated Apoptosis in Glioblastoma Cells<br \/>\n<strong>Shanay Desai<\/strong>, undergraduate, Biomedical Engineering (King)<\/li>\n<li>Photosystem I as an active layer for microfluidic redox flow systems<br \/>\n<strong>Matthew Galazzo<\/strong>, Interdisciplinary Materials Science (Cliffel)<\/li>\n<li>Albumin-Hitchhiking MMP13 siRNA Conjugate (siMMP13&lt;(EG18L)2) for the Treatment of Rheumatic Disease<br \/>\n<strong>Juan M. Colazo<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>How do defects impact the stability of MXenes in water<br \/>\n<strong>Haohong Song<\/strong>, Interdisciplinary Materials Science (Jiang)<\/li>\n<li>Neutralization of SARS-CoV-2 by Extracting the Spikes Using Engineered Liposomes<br \/>\n<strong>Jason Zhenjiang Zhang<\/strong>, postdoctoral associate, Biomedical Engineering (King)<\/li>\n<li>Kinetic Control of Angstrom Scale Porosity in 2D Lattices for Atomically Thin Proton Exchange Membranes<br \/>\n<strong>Nicole Moehring<\/strong>, Interdisciplinary Materials Science (Kidambi)<\/li>\n<li>Control of Ultra-Thick SU8 Photolithography Structures for Production of Tumor Spheroids<br \/>\n<strong>Noah Reckhorn<\/strong>, undergraduate, Biomedical Engineering (King)<\/li>\n<li>Graphene-based microfluidic perforated microelectrode arrays for retinal electrophysiology studies<br \/>\n<strong>Alberto Esteban Linares<\/strong>, Mechanical Engineering (Li)<\/li>\n<li>Shear Polaritons in Monoclinic Crystals<br \/>\n<strong>Joseph Matson<\/strong>, Interdisciplinary Materials Science (Caldwell)<\/li>\n<li>Modifying siRNA Delivery Using Polymer Conjugates for Tumor Induced Bone Disease<br \/>\n<strong>Jordan Hill<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Development of alpha beta TCR Mechanosensory Tools and Simulations<br \/>\n<strong>Alex Stoneman<\/strong>, undergraduate, Chemical and Biomolecular\u00a0Engineering (Lang)<\/li>\n<li>Under Pressure: Confinement Drives Mechanical Memory in Migratory Breast Cancer Cells<br \/>\n<strong>Jenna Mosier<\/strong>, Biomedical Engineering (Reinhart-King)<\/li>\n<li>Enhancement of Third Harmonic generation via harmonic plasmon coupling in Au\/CuS nanoparticle films<br \/>\n<strong>Nathan Spear<\/strong>, Interdisciplinary Materials Science (Macdonald\/Haglund)<\/li>\n<li>Nanoparticle-Based Delivery of CRISPR\/Cas9 Ribonucleoprotein for the Treatment of Osteoarthritis<br \/>\n<strong>Morgan Struthers<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Novel Nano-in-Cryogel Biomaterials for the Localized Reprogramming of Tumor Associated Macrophages<br \/>\n<strong>Sydney Henriques<\/strong>, Biomedical Engineering (Giorgio)<\/li>\n<li>Matching Metal Precursor Reactivity in Transition Metal Tellurides<br \/>\n<strong>Danielle Penk<\/strong>, Chemistry (Macdonald)<\/li>\n<li>Utilizing 3D printing technology to fabricate a perfused brain arteriole from stem cell sources<br \/>\n<strong>Lexi Yates<\/strong>, Interdisciplinary Materials Science (Lippmann\/Jefferson)<\/li>\n<li>Development of a Nanoparticle-Hydrogel Composite for the Treatment of Osteoarthritis<br \/>\n<strong>Larry Stokes<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Production of a Tunable CTC Cluster in vitro Model via a Superhydrophobic Microwell Array Device<br \/>\n<strong>Olivia Wright<\/strong>, Biomedical Engineering (King)<\/li>\n<li>Integration between Metasurfaces and Microfluidics for Fluorescent Cell Classification<br \/>\n<strong>Tao Hong<\/strong>, Interdisciplinary Materials Science (Li)<\/li>\n<li>Wide-bandgap semiconductor devices for space applications<br \/>\n<strong>Aditha Senarath<\/strong>, Interdisciplinary Materials Science (Caldwell)<\/li>\n<li>Formulation Parameters for a Nanofabricated PLGA-based Drug Delivery System to the Pregnant Uterus<br \/>\n<strong>Lauren Link<\/strong>, undergraduate, Biomedical Engineering (Giorgio)<\/li>\n<li>Cation Exchange of Hexagonal Cu<sub>2<\/sub>Se towards novel Cu<sub>2<\/sub>Au<sub>5<\/sub>Se<sub>3<\/sub><br \/>\n<strong>Christopher Sharp<\/strong>, Chemistry (Macdonald)<\/li>\n<li>Differences in Water and Vapor Transport through Angstrom-scale Pores in Atomically Thin Membranes<br \/>\n<strong>Peifu Cheng<\/strong>, postdoctoral associate, Chemical and Biomolecular Engineering (Kidambi)<\/li>\n<li>Ultrahigh Drug-Loaded Nanorods or the Treatment of a Triple-Negative Breast Cancer<br \/>\n<strong>Richard d&#8217;Arcy<\/strong>, postdoctoral associate, Biomedical Engineering (Duvall)<\/li>\n<li>Electro-osmotic Regulation of Membrane Pore Size at the Angstrom Scale<br \/>\n<strong>Ruoyu Wang<\/strong>, Civil and Environmental Engineering (Lin)<\/li>\n<li>Lipid-siRNA conjugates distribute broadly in the CNS and silences gene expression following CSF delivery<br \/>\n<strong>Alex Sorets<\/strong>, Biomedical Engineering (Lippmann\/Duvall)<\/li>\n<li>Synthesizing Metal Selenide Nanocrystal Phases<br \/>\n<strong>Antony Peng<\/strong>, undergraduate, Chemistry (Macdonald)<\/li>\n<li>Nanoscale spectroscopy of extended defects in 4H Silicon Carbide<br \/>\n<strong>Scott Criswell<\/strong>, Electrical and Computer Engineering (Caldwell)<\/li>\n<li>Advancing Hydrophilicity of ROS Degradable Polythioketal Urethane Foam Dressings to Promote Wound Repair<br \/>\n<strong>Josh McCune<\/strong>, Biomedical Engineering (Duvall)<\/li>\n<li>Understanding how Zn<sup>2+<\/sup> insertion in Mn<sub>3<\/sub>O<sub>4<\/sub> enables reversible Cl<sup>&#8211;<\/sup> redox chemistry<br \/>\n<strong>Qiuyao Li<\/strong>, Interdisciplinary Materials Science (Jiang)<\/li>\n<li>A Dual-Bead Approach: Measuring \u03b1\u03b2TCR-pMHC interactive forces and lifetimes<br \/>\n<strong>Allyson Karmazyn<\/strong>, Chemical and Biomolecular Engineering (Lang)<\/li>\n<li>Flash Nanoprecipitation for the Scalable Production of STING-Activating Nanoparticles<br \/>\n<strong>Hayden Pagendarm<\/strong>, Biomedical\u00a0Engineering\u00a0(Wilson)<\/li>\n<li>Synthesis and Characterization of 2D Hexagonal Boron Nitride<br \/>\n<strong>Andrew Naclerio<\/strong>, Chemical and Biomolecular Engineering (Kidambi)<\/li>\n<li>Engineering a Multiplex Approach to Study Circulating Prostate Cancer Cell Mechanotransduction Under Fluid Shear Stress<br \/>\n<strong>Abby Fabiano<\/strong>, Biomedical Engineering (King)<\/li>\n<li>Counter Anion Effects on PEDOT Properties and Implications on Photosystem I Incorporation<br \/>\n<strong>William Lowery<\/strong>, Chemistry (Cliffel)<\/li>\n<li>Affinity Purification of Small Vesicles using Bio-Functionalized Magnetic Particles<br \/>\n<strong>Marsalas Whitaker<\/strong>, Biomedical Engineering (Giorgio)<\/li>\n<li>Nanoparticle Delivery of Small Molecule Inhibitors to Treat STING-associated Inflammatory Diseases<br \/>\n<strong>Lucinda Pastora<\/strong>, Chemical and Biomolecular Engineering (Wilson)<\/li>\n<\/ol>\n<p><strong><em><u>1st year Interdisciplinary Materials Science 10-week rotation posters<\/u><\/em><\/strong><\/p>\n<ol>\n<li>Phonon-polariton Enhanced Thermal Transport<br \/>\n<strong>Trey Long<\/strong> (Caldwell)<\/li>\n<li>SARS-CoV2 Detection using Peptide-functionalized Ring Resonators<br \/>\n<strong>Soren Smail <\/strong>(Weiss)<\/li>\n<li>Random Copolymers by Spin-Coating ROMP<br \/>\n<strong>Matthew Vasuta <\/strong>(Jennings)<\/li>\n<li>Silicon Metalens Design and Optimization for Photodetecting Applications<br \/>\n<strong>Madison Miller <\/strong>(Valentine)<\/li>\n<li>Radiation Effects on FDSOI Transistors<br \/>\n<strong>Owen Meilander <\/strong>(Schrimpf)<\/li>\n<li>Vibrational Strong Coupling between h-BN and PMMA<br \/>\n<strong>Courtney Ragle <\/strong>(Caldwell)<\/li>\n<li>Perturbation Approach to Characterize Molecular Detection Capabilities of Photonic Crystal Nanobeams<br \/>\n<strong>Chris Whittington <\/strong>(Weiss)<\/li>\n<li>Designing of a transparent nano-plasmonic substrate<br \/>\n<strong>Huijin An <\/strong>(Locke)<\/li>\n<li>Graphene transfer onto polymeric substrate: effect of temperature and pressure<br \/>\n<strong>Rahul Shah <\/strong>(Kidambi)<\/li>\n<li>Optimization of 3D Printed Molds for Microfluidic PET Radiotracer Synthesis Devices<br \/>\n<strong>Mark Mc Veigh <\/strong>(Bellan)<\/li>\n<li>Silicon Nitride Slow Light Photonic Crystal Nanobeams for Enhancing Single Photon Emission<br \/>\n<strong>Harrison Walker <\/strong>(Weiss)<\/li>\n<\/ol>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>A yearly forum for faculty, postdocs, and students engaged in nanoscience and nanotechnology research.\u00a0Register here\u00a0 Schedule Featheringill Hall 11:30\u00a0LUNCH begins 12:00\u00a0POSTER SESSION Buttrick Hall, Room 101 2:30\u00a0\u00a0Opening Remarks\u00a0Dr. Sharon M. Weiss 2:40\u00a0New Strategies for Microdevice Fabrication using Parylene-coated 3D Prints Dr.\u00a0Ethan Lippmann 3:00\u00a0Exploring the Role of Anisotropy and Strong Coupling in Driving Infrared Nanophotonics\u00a0Dr.\u00a0Josh Caldwell&#8230;<\/p>\n","protected":false},"author":3411,"featured_media":3579,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[11,13,1],"tags":[34,57,14,23,18],"class_list":["post-3578","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-vinse-colloquium","category-events","category-news","tag-ims","tag-materials-science","tag-nanoday","tag-vinse-colloquium","tag-vinse-news"],"_links":{"self":[{"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/posts\/3578","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/users\/3411"}],"replies":[{"embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/comments?post=3578"}],"version-history":[{"count":37,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/posts\/3578\/revisions"}],"predecessor-version":[{"id":4098,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/posts\/3578\/revisions\/4098"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/media\/3579"}],"wp:attachment":[{"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/media?parent=3578"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/categories?post=3578"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/my.vanderbilt.edu\/vinsenews\/wp-json\/wp\/v2\/tags?post=3578"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}