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Jillian L. Dempsey

Chemistry University of North Carolina, Chapel Hill, Chapel Hill, NC 
Inorganic Spectroscopy and Solar Energy Conversion
"Jillian L. Dempsey"

Mean distance: 7.3


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Daniel G. Nocera research assistant 2005 MIT
Harry Barkus Gray grad student 2011 Caltech
 (Hydrogen evolution catalyzed by cobaloximes.)
Daniel R. Gamelin post-doc 2011-2012 University of Washington
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Kurtz DA, Dhar D, Elgrishi N, et al. (2021) Redox-Induced Structural Reorganization Dictates Kinetics of Cobalt(III) Hydride Formation via Proton-Coupled Electron Transfer. Journal of the American Chemical Society
Dhar D, McKenas CG, Huang CW, et al. (2020) Quantitative Effects of Disorder on Chemically Modified Amorphous Carbon Electrodes. Acs Applied Energy Materials. 3: 8038-8047
Kurtz DA, Dempsey JL. (2019) Proton-Coupled Electron Transfer Kinetics for the Photoinduced Generation of a Cobalt(III)-Hydride Complex. Inorganic Chemistry
Dempsey JL, Lancaster KM. (2019) Celebrating the Year of the Periodic Table: Emerging Investigators in Inorganic Chemistry. Inorganic Chemistry. 58: 10433-10435
Kurtz DA, Brereton KR, Ruoff KP, et al. (2018) Bathochromic Shifts in Rhenium Carbonyl Dyes Induced through Destabilization of Occupied Orbitals. Inorganic Chemistry
Dempsey JL, Hartings MR. (2017) Hop to It. Biochemistry
Elgrishi N, Kurtz DA, Dempsey JL. (2016) Reaction Parameters Influencing Cobalt Hydride Formation Kinetics: Implications for Benchmarking H2-Evolution Catalysts. Journal of the American Chemical Society
Eisenhart TT, Howland WC, Dempsey JL. (2016) Proton-Coupled Electron Transfer Reactions with Photometric Bases Reveal Free Energy Relationships for Proton Transfer. The Journal of Physical Chemistry. B
Dempsey JL. (2016) Ligand steals spotlight from metal to orchestrate hydrogen production. Proceedings of the National Academy of Sciences of the United States of America
Hara Y, Gadisa A, Fu Y, et al. (2016) Gains and Losses in PbS Quantum Dot Solar Cells with Submicron Periodic Grating Structures Journal of Physical Chemistry C. 120: 8005-8013
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