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Inorganic Chemistry|August 18, 2020
Molecular Catalysts with Intramolecular Re-O Bond for Electrochemical Reduction of Carbon DioxideLaura Rotundo, Dmitry E Polyansky, Roberto Gobetto, et al.
Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|May 15, 2021
Structural and Electronic Influences on Rates of Tertpyridine-Amine CoIII -H Formation During Catalytic H2 Evolution in an Aqueous EnvironmentBrian N DiMarco, Dmitry E Polyansky, David C Grills, et al.
ACS Organic & Inorganic Au|December 9, 2024
Catalyst Protonation Changes the Mechanism of Electrochemical Hydride Transfer to CO2Kevin Y C Lee, Dmitry E Polyansky, David C Grills, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 15, 2023
Mechanistic roles of metal- and ligand-protonated species in hydrogen evolution with [Cp*Rh] complexesWade C Henke, Yun Peng, Alex A Meier, et al.
Inorganic Chemistry|May 25, 2023
Lewis Acids and Electron-Withdrawing Ligands Accelerate CO Coordination to Dinuclear CuI CompoundsWalter D Johnsen, Mawuli Deegbey, David C Grills, et al.
Chemical Communications (Cambridge, England)|November 30, 2013
Reactivity of a fac-ReCl(α-diimine)(CO)3 complex with an NAD+ model ligand toward CO2 reductionYasuo Matsubara, Sean E Hightower, Jinzhu Chen, et al.
Journal of the American Chemical Society|June 16, 2025
Photochemical Ligand-Based CO2 Reduction Mediated by Ruthenium Formyl SpeciesSai Puneet Desai, Andressa V Müller, Chiara Cappuccino, et al.
Inorganic Chemistry|April 2, 2013
Kinetics and thermodynamics of small molecule binding to pincer-PCP rhodium(I) complexesMark D Doherty, David C Grills, Kuo-Wei Huang, et al.
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