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Andrew Doyle
Andrew Doyle
Graduate Student in Chemical Engineering, Stanford University
Verified email at stanford.edu
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Cited by
Cited by
Year
A highly active and stable IrOx/SrIrO3 catalyst for the oxygen evolution reaction
LC Seitz, CF Dickens, K Nishio, Y Hikita, J Montoya, A Doyle, C Kirk, ...
Science 353 (6303), 1011-1014, 2016
17072016
Solvation Effects for Oxygen Evolution Reaction Catalysis on IrO2(110)
JA Gauthier, CF Dickens, LD Chen, AD Doyle, JK Nørskov
The Journal of Physical Chemistry C 121 (21), 11455-11463, 2017
2042017
Improving oxygen electrochemistry through nanoscopic confinement
AD Doyle, JH Montoya, A Vojvodic
ChemCatChem 7 (5), 738-742, 2015
1292015
Trends in adsorption of electrocatalytic water splitting intermediates on cubic ABO 3 oxides
JH Montoya, AD Doyle, JK Nørskov, A Vojvodic
Physical Chemistry Chemical Physics 20 (5), 3813-3818, 2018
942018
Theoretical insights to bulk activity towards oxygen evolution in oxyhydroxides
AD Doyle, M Bajdich, A Vojvodic
Catalysis Letters 147, 1533-1539, 2017
502017
Formic acid dissociative adsorption on NiO (111): energetics and structure of adsorbed formate
W Zhao, AD Doyle, SE Morgan, M Bajdich, JK Nørskov, CT Campbell
The Journal of Physical Chemistry C 121 (50), 28001-28006, 2017
112017
Iridate Perovskites As Highly Active Catalysts for Electrochemical Water Splitting in Acidic Conditions
L Seitz, CF Dickens, K Nishio, Y Hikita, J Montoya, A Doyle, C Kirk, ...
2019 North American Catalysis Society Meeting, 2019
2019
Exploring Structural Effects in Oxygen Evolution Catalysis
AD Doyle
Stanford University, 2017
2017
Cover Picture: Improving Oxygen Electrochemistry through Nanoscopic Confinement (ChemCatChem 5/2015)
AD Doyle, JH Montoya, A Vojvodic
ChemCatChem 7 (5), 707-707, 2015
2015
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