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The Journal of Physical Chemistry. C, Nanomaterials and Interfaces|March 13, 2024
Quantum Dot Fluorescent Imaging: Using Atomic Structure Correlation Studies to Improve Photophysical PropertiesRuben Torres, Lucas B Thal, James R McBride, et al.Journal of the American Chemical Society|May 9, 2012
Bright white light emission from ultrasmall cadmium selenide nanocrystalsTeresa E Rosson, Sarah M Claiborne, James R McBride, et al.Journal of the American Chemical Society|January 24, 2022
Fluorescent Colloidal Ferroelectric NanocrystalsCara E Bradsher, Cayla D Ontko, Alexandra C Koziel, et al.Nano Letters|December 29, 2017
Chemical Structure, Ensemble and Single-Particle Spectroscopy of Thick-Shell InP-ZnSe Quantum DotsKemar R Reid, James R McBride, Nathaniel J Freymeyer, et al.Nanotechnology|May 6, 2010
PbS/PbSe structures with core-shell type morphology synthesized from PbS nanocrystalsDmitry S Koktysh, James R McBride, Sriram K Dixit, et al.Nano Letters|February 2, 2008
Quantum dot ex vivo labeling of neuromuscular synapsesRebecca L Orndorff, Michael R Warnement, John N Mason, et al.Frontiers in Cellular Neuroscience|December 6, 2021
A Novel Biotinylated Homotryptamine Derivative for Quantum Dot Imaging of Serotonin Transporter in Live CellsIan D Tomlinson, Oleg Kovtun, Ruben Torres, et al.Nano Letters|May 10, 2012
Dynamic fluctuations in ultrasmall nanocrystals induce white light emissionTimothy J Pennycook, James R McBride, Sandra J Rosenthal, et al.ACS Nano|December 20, 2014
Correlation of atomic structure and photoluminescence of the same quantum dot: pinpointing surface and internal defects that inhibit photoluminescenceNoah J Orfield, James R McBride, Joseph D Keene, et al.ACS Chemical Neuroscience|May 23, 2018
Single Quantum Dot Tracking Reveals Serotonin Transporter Diffusion Dynamics are Correlated with Cholesterol-Sensitive Threonine 276 Phosphorylation Status in Primary Midbrain NeuronsDanielle M Bailey, Mackenzie A Catron, Oleg Kovtun, et al.Pageof 11