Gaurav A Kamat

Affiliations: 
Chemical Engineering Stanford University, Palo Alto, CA 
Area:
Electrocatalysis
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"Gaurav Kamat"

Parents

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A. Paul Alivisatos research assistant 2018-2020 UC Berkeley/LBNL (Chemistry Tree)
Thomas F. Jaramillo grad student 2021- Stanford (Chemistry Tree)
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Publications

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Wei L, Hossain MD, Chen G, et al. (2024) Tuning Two-Dimensional Phthalocyanine Dual Site Metal-Organic Framework Catalysts for the Oxygen Reduction Reaction. Journal of the American Chemical Society
Deo S, Kreider M, Kamat G, et al. (2024) Interpretable Machine Learning Models for Practical Antimonate Electrocatalyst Performance. Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry. e202400010
Ledendecker M, Paciok P, Osowiecki WT, et al. (2022) Engineering gold-platinum core-shell nanoparticles by self-limitation in solution. Communications Chemistry. 5: 71
Kamat GA, Zamora Zeledón JA, Gunasooriya GTKK, et al. (2022) Acid anion electrolyte effects on platinum for oxygen and hydrogen electrocatalysis. Communications Chemistry. 5: 20
Kreider ME, Kamat GA, Zamora Zeledón JA, et al. (2022) Understanding the Stability of Manganese Chromium Antimonate Electrocatalysts through Multimodal In Situ and Operando Measurements. Journal of the American Chemical Society
Yan C, Byrne D, Ondry JC, et al. (2022) Facet-selective etching trajectories of individual semiconductor nanocrystals. Science Advances. 8: eabq1700
Zamora Zeledón JA, Kamat GA, Gunasooriya GTKK, et al. (2021) Probing the Effects of Acid Electrolyte Anions on Electrocatalyst Activity and Selectivity for the Oxygen Reduction Reaction Chemelectrochem. 8: 2467-2478
Ha HD, Yan C, Katsoukis G, et al. (2020) Precise Colloidal Plasmonic Photocatalysts Constructed by Multistep Photodepositions. Nano Letters
Kamat GA, Yan C, Osowiecki WT, et al. (2020) Self-Limiting Shell Formation in Cu@Ag Core-Shell Nanocrystals During Galvanic Replacement. The Journal of Physical Chemistry Letters
Osowiecki WT, Nussbaum JJ, Kamat GA, et al. (2019) Factors and Dynamics of Cu Nanocrystal Reconstruction under CO2 Reduction Acs Applied Energy Materials. 2: 7744-7749
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