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Accounts of Chemical Research|May 7, 2019
Heterogenized Molecular Catalysts: Vibrational Sum-Frequency Spectroscopic, Electrochemical, and Theoretical InvestigationsAimin Ge, Benjamin Rudshteyn, Pablo E Videla, et al.
The Journal of Physical Chemistry. A|December 8, 2005
Intervalence-resonant Raman spectroscopy of strongly coupled mixed-valence cluster dimers of rutheniumReginaldo C Rocha, Mac G Brown, Casey H Londergan, et al.
ACS Applied Energy Materials|April 26, 2024
Role of Mass Transport in Electrochemical CO2 Reduction to Methanol Using Immobilized Cobalt PhthalocyanineThomas Chan, Calton J Kong, Alex J King, et al.
The Journal of Physical Chemistry Letters|March 11, 2025
Control of Reversible Oxidative Addition/Reductive Elimination of Surface-Attached Catalysts by External Electric FieldsZhuoran Long, H Ray Kelly, Pablo E Videla, et al.
Chemical Science|February 5, 2019
Direct observation of the intermediate in an ultrafast isomerizationTyler M Porter, Jiaxi Wang, Yingmin Li, et al.
The Journal of Physical Chemistry. B|December 16, 2014
Electron-Transfer Reactions of Electronically Excited Zinc Tetraphenylporphyrin with Multinuclear Ruthenium ComplexesJane Henderson, Starla D Glover, Benjamin J Lear, et al.
Nature Chemistry|April 24, 2010
High-spin ground states via electron delocalization in mixed-valence imidazolate-bridged divanadium complexesBettina Bechlars, Deanna M D'Alessandro, David M Jenkins, et al.
Inorganic Chemistry|August 20, 2015
Electrocatalytic Reduction of Carbon Dioxide by Mn(CN)(2,2'-bipyridine)(CO)3: CN Coordination Alters MechanismCharles W Machan, Charles J Stanton, Jonathon E Vandezande, et al.
Physical Chemistry Chemical Physics : PCCP|May 17, 2012
Controlling the rate of electron transfer between a quantum dot and a tri-ruthenium molecular cluster by tuning the chemistry of the interfaceAdam J Morris-Cohen, Kenneth O Aruda, Andrew M Rasmussen, et al.
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