Aaron M Appel
Aaron M Appel
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Frontiers, Opportunities, and Challenges in Biochemical and Chemical Catalysis of CO2 Fixation
AM Appel, JE Bercaw, AB Bocarsly, H Dobbek, DL DuBois, M Dupuis, ...
Chemical Reviews 113 (8), 6621-6658, 2013
Thermodynamic Hydricity of Transition Metal Hydrides
ES Wiedner, MB Chambers, CL Pitman, RM Bullock, AJM Miller, ...
Chemical Reviews 116 (15), 8655-8692, 2016
A cobalt-based catalyst for the hydrogenation of CO2 under ambient conditions
MS Jeletic, MT Mock, AM Appel, JC Linehan
Journal of the American Chemical Society 135 (31), 11533-11536, 2013
[Ni(PPh2NC6H4X2)2]2+ Complexes as Electrocatalysts for H2 Production: Effect of Substituents, Acids, and Water on Catalytic Rates
UJ Kilgore, JAS Roberts, DH Pool, AM Appel, MP Stewart, MR DuBois, ...
Journal of the American Chemical Society 133 (15), 5861-5872, 2011
Determining the Overpotential for a Molecular Electrocatalyst
AM Appel, ML Helm
ACS Catalysis 4, 630-633, 2014
Production of hydrogen by electrocatalysis: making the H–H bond by combining protons and hydrides
RM Bullock, AM Appel, ML Helm
Chemical Communications 50 (24), 3125-3143, 2014
Standard Reduction Potentials for Oxygen and Carbon Dioxide Couples in Acetonitrile and N, N-Dimethylformamide
ML Pegis, JAS Roberts, DJ Wasylenko, EA Mader, AM Appel, JM Mayer
Inorganic chemistry 54 (24), 11883-11888, 2015
Molybdenum-sulfur dimers as electrocatalysts for the production of hydrogen at low overpotentials
AM Appel, DL DuBois, M Rakowski DuBois
Journal of the American Chemical Society 127 (36), 12717-12726, 2005
Surface Immobilization of Molecular Electrocatalysts for Energy Conversion
RM Bullock, AK Das, AM Appel
Chemistry-A European Journal, 2017
Thermodynamic Properties of the Ni-H Bond in Complexes of the Type [HNi(P2RN2R')2](BF4) and Evaluation of Factors That Control Catalytic Activity for Hydrogen Oxidation/Production
K Fraze, AD Wilson, AM Appel, M Rakowski DuBois, DL DuBois
Organometallics 26 (16), 3918-3924, 2007
A Molecular Copper Catalyst for Hydrogenation of CO2 to Formate
CM Zall, JC Linehan, AM Appel
ACS Catalysis 5 (9), 5301-5305, 2015
A Bimetallic Nickel–Gallium Complex Catalyzes CO2 Hydrogenation via the Intermediacy of an Anionic d10 Nickel Hydride
RC Cammarota, MV Vollmer, J Xie, J Ye, JC Linehan, SA Burgess, ...
Journal of the American Chemical Society 139 (40), 14244-14250, 2017
Proton Delivery and Removal in [Ni(PR2NR′2)2]2+ Hydrogen Production and Oxidation Catalysts
M O’Hagan, MH Ho, JY Yang, AM Appel, MR DuBois, S Raugei, WJ Shaw, ...
Journal of the American Chemical Society 134 (47), 19409-19424, 2012
Evaluating the Thermodynamics of Electrocatalytic N2 Reduction in Acetonitrile
BM Lindley, AM Appel, K Krogh-Jespersen, JM Mayer, AJM Miller
ACS Energy Letters 1, 698-704, 2016
Electrocatalytic oxidation of formate by [Ni(PR2NR′2)2(CH3CN)]2+ complexes
BR Galan, J Schöffel, JC Linehan, C Seu, AM Appel, JAS Roberts, ...
Journal of the American Chemical Society 133 (32), 12767-12779, 2011
A Cobalt Hydride Catalyst for the Hydrogenation of CO2: Pathways for Catalysis and Deactivation
MS Jeletic, ML Helm, EB Hulley, MT Mock, AM Appel, JC Linehan
ACS Catalysis 4 (10), 3755-3762, 2014
[Ni(PPh2NBn2)2(CH3CN)]2+ as an Electrocatalyst for H2 Production: Dependence on Acid Strength and Isomer Distribution
AM Appel, DH Pool, M O’Hagan, WJ Shaw, JY Yang, M Rakowski DuBois, ...
ACS Catalysis 1 (7), 777-785, 2011
Triphosphine-Ligated Copper Hydrides for CO2 Hydrogenation: Structure, Reactivity, and Thermodynamic Studies
CM Zall, JC Linehan, AM Appel
Journal of the American Chemical Society 138 (31), 9968-9977, 2016
Thermochemical and Mechanistic Studies of Electrocatalytic Hydrogen Production by Cobalt Complexes Containing Pendant Amines
ES Wiedner, AM Appel, DL DuBois, RM Bullock
Inorganic chemistry 52 (24), 14391-14403, 2013
Predicting the reactivity of hydride donors in water: thermodynamic constants for hydrogen
SJ Connelly, ES Wiedner, AM Appel
Dalton Transactions 44 (13), 5933-5938, 2015
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