Eric Choudhary
Affiliations: | 2014 | Cornell University, Ithaca, NY, United States |
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Sambur JB, Shepherd DP, Hesari M, et al. (2019) Correlated Single-Molecule Reaction Imaging and Photocurrent Measurements Reveal Underlying Rate Processes in Photoelectrochemical Water Splitting Journal of the Electrochemical Society. 166: H3286-H3293 |
Zou N, Chen G, Mao X, et al. (2018) Imaging Catalytic Hotspots on Single Plasmonic Nanostructures via Correlated Super-Resolution and Electron Microscopy. Acs Nano |
Chen G, Zou N, Chen B, et al. (2017) Bimetallic Effect of Single Nanocatalysts Visualized by Super-Resolution Catalysis Imaging. Acs Central Science. 3: 1189-1197 |
Velmurugan J, Agrawal A, An S, et al. (2017) Fabrication of Scanning Electrochemical Microscopy-Atomic Force Microscopy Probes to Image Surface Topography and Reactivity at the Nanoscale. Analytical Chemistry |
Choudhary E, Velmurugan J, Marr JM, et al. (2016) Optical Fluorescence Microscopy for Spatially Characterizing Electron Transfer across a Solid-Liquid Interface on Heterogeneous Electrodes. Mrs Advances. 1: 2867-2872 |
Sambur JB, Chen TY, Choudhary E, et al. (2016) Sub-particle reaction and photocurrent mapping to optimize catalyst-modified photoanodes. Nature. 530: 77-80 |
Chen P, Zhou X, Andoy NM, et al. (2014) Spatiotemporal catalytic dynamics within single nanocatalysts revealed by single-molecule microscopy. Chemical Society Reviews. 43: 1107-17 |
Andoy NM, Zhou X, Choudhary E, et al. (2013) Single-molecule catalysis mapping quantifies site-specific activity and uncovers radial activity gradient on single 2D nanocrystals. Journal of the American Chemical Society. 135: 1845-52 |
Zhou X, Choudhary E, Andoy NM, et al. (2013) Scalable parallel screening of catalyst activity at the single-particle level and subdiffraction resolution Acs Catalysis. 3: 1448-1453 |
Zhou X, Andoy NM, Liu G, et al. (2012) Quantitative super-resolution imaging uncovers reactivity patterns on single nanocatalysts. Nature Nanotechnology. 7: 237-41 |