Thomas J. Schmidt
Thomas J. Schmidt
Professor for Electrochemistry, ETH Zürich and Paul Scherrer Institut
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Oxygen reduction on a high-surface area Pt/Vulcan carbon catalyst: a thin-film rotating ring-disk electrode study
UA Paulus, TJ Schmidt, HA Gasteiger
J Electroanal Chem 495 (2), 134-145, 2001
Characterization of high‐surface‐area electrocatalysts using a rotating disk electrode configuration
TJ Schmidt, HA Gasteiger, GD Stäb, PM Urban, DM Kolb, RJ Behm
Journal of the Electrochemical Society 145 (7), 2354, 1998
Oxygen reduction reaction on Pt and Pt bimetallic surfaces: a selective review
NM Marković, TJ Schmidt, V Stamenković, PN Ross
Fuel cells 1 (2), 105-116, 2001
Developments and perspectives of oxide-based catalysts for the oxygen evolution reaction
E Fabbri, A Habereder, K Waltar, R Kötz, TJ Schmidt
Catalysis Science & Technology 4 (11), 3800-3821, 2014
Oxygen reduction on carbon-supported Pt− Ni and Pt− Co alloy catalysts
UA Paulus, A Wokaun, GG Scherer, TJ Schmidt, V Stamenkovic, ...
The Journal of Physical Chemistry B 106 (16), 4181-4191, 2002
Surface Composition Effects in Electrocatalysis:  Kinetics of Oxygen Reduction on Well-Defined Pt3Ni and Pt3Co Alloy Surfaces
V Stamenković, TJ Schmidt, PN Ross, NM Marković
The Journal of Physical Chemistry B 106 (46), 11970-11979, 2002
Electrocatalysis for polymer electrolyte fuel cells: recent achievements and future challenges
A Rabis, P Rodriguez, TJ Schmidt
Acs Catalysis 2 (5), 864-890, 2012
Dynamic surface self-reconstruction is the key of highly active perovskite nano-electrocatalysts for water splitting
E Fabbri, M Nachtegaal, T Binninger, X Cheng, BJ Kim, J Durst, F Bozza, ...
Nature materials 16 (9), 925-931, 2017
Oxygen reduction on high surface area Pt-based alloy catalysts in comparison to well defined smooth bulk alloy electrodes
UA Paulus, A Wokaun, GG Scherer, TJ Schmidt, V Stamenkovic, ...
Electrochimica Acta 47 (22-23), 3787-3798, 2002
The oxygen reduction reaction on a Pt/carbon fuel cell catalyst in the presence of chloride anions
TJ Schmidt, UA Paulus, HA Gasteiger, RJ Behm
Journal of Electroanalytical Chemistry 508 (1-2), 41-47, 2001
Critical review—identifying critical gaps for polymer electrolyte water electrolysis development
U Babic, M Suermann, FN Büchi, L Gubler, TJ Schmidt
Journal of The Electrochemical Society 164 (4), F387, 2017
Oxygen evolution reaction—the enigma in water electrolysis
E Fabbri, TJ Schmidt
Acs Catalysis 8 (10), 9765-9774, 2018
Effect of temperature on surface processes at the Pt (111)− liquid interface: hydrogen adsorption, oxide formation, and CO oxidation
NM Marković, TJ Schmidt, BN Grgur, HA Gasteiger, RJ Behm, PN Ross
The Journal of Physical Chemistry B 103 (40), 8568-8577, 1999
Iridium oxide for the oxygen evolution reaction: correlation between particle size, morphology, and the surface hydroxo layer from operando XAS
DF Abbott, D Lebedev, K Waltar, M Povia, M Nachtegaal, E Fabbri, ...
Chemistry of Materials 28 (18), 6591-6604, 2016
Surface segregation effects in electrocatalysis: kinetics of oxygen reduction reaction on polycrystalline Pt3Ni alloy surfaces
V Stamenković, TJ Schmidt, PN Ross, NM Marković
Journal of Electroanalytical Chemistry 554, 191-199, 2003
Polymer electrolyte fuel cell durability
FN Büchi, M Inaba, TJ Schmidt
Springer New York, 2009
Thermodynamic explanation of the universal correlation between oxygen evolution activity and corrosion of oxide catalysts
T Binninger, R Mohamed, K Waltar, E Fabbri, P Levecque, R Kötz, ...
Scientific reports 5 (1), 12167, 2015
Surface distortion as a unifying concept and descriptor in oxygen reduction reaction electrocatalysis
R Chattot, O Le Bacq, V Beermann, S Kühl, J Herranz, S Henning, L Kühn, ...
Nature materials 17 (9), 827-833, 2018
Noble Metal Aerogels Synthesis, Characterization, and Application as Electrocatalysts
W Liu, AK Herrmann, NC Bigall, P Rodriguez, D Wen, M Oezaslan, ...
Accounts of chemical research 48 (2), 154-162, 2015
Properties of high-temperature PEFC Celtec®-P 1000 MEAs in start/stop operation mode
TJ Schmidt, J Baurmeister
Journal of Power Sources 176 (2), 428-434, 2008
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