Publications of Detre Teschner
All genres
Journal Article (179)
21.
Journal Article
6 (1), pp. 177 - 183 (2021)
Modular Design of Highly Active Unitized Reversible Fuel Cell Electrocatalysts. ACS Energy Letters 22.
Journal Article
280, 115911 (2020)
Degradation study of a proton exchange membrane water electrolyzer under dynamic operation conditions. Applied Energy 23.
Journal Article
63 (19-20), pp. 1683 - 1699 (2020)
Towards Experimental Handbooks in Catalysis. Topics in Catalysis 24.
Journal Article
587 (7834), pp. 408 - 413 (2020)
Key role of chemistry versus bias in electrocatalytic oxygen evolution. Nature 25.
Journal Article
19 (11), pp. 1215 - 1223 (2020)
P-block single-metal-site tin/nitrogen-doped carbon fuel cell cathode catalyst for oxygen reduction reaction. Nature Materials 26.
Journal Article
124 (42), pp. 23069 - 23077 (2020)
Compositional Decoupling of Bulk and Surface in Open Structured Complex Mixed Oxides. The Journal of Physical Chemistry C 27.
Journal Article
132 (38), pp. 16913 - 16919 (2020)
Al2Pt für die Sauerstoffentwicklungsreaktion bei der Wasserspaltung: eine Strategie zur Erzeugung von Multifunktionalität in der Elektrokatalyse. Angewandte Chemie 28.
Journal Article
59 (38), pp. 16770 - 16776 (2020)
Al2Pt for Oxygen Evolution in Water Splitting: a Strategy for Creating Multi-functionality in Electrocatalysis. Angewandte Chemie International Edition 29.
Journal Article
10 (13), pp. 7007 - 7020 (2020)
Surface Conditions That Constrain Alkane Oxidation on Perovskites. ACS Catalysis 30.
Journal Article
22 (20), pp. 11273 - 11285 (2020)
F-doping of nanostructured ZnO: a way to modify structural, electronic, and surface properties. Physical Chemistry Chemical Physics 31.
Journal Article
11, 2522 (2020)
In-situ structure and catalytic mechanism of NiFe and CoFe layered double hydroxides during oxygen evolution. Nature Communications 32.
Journal Article
234 (5), pp. 787 - 812 (2020)
The Role of Surface Hydroxylation, Lattice Vacancies and Bond Covalency in the Electrochemical Oxidation of Water (OER) on Ni-Depleted Iridium Oxide Catalysts. Zeitschrift für Physikalische Chemie 33.
Journal Article
381, pp. 520 - 529 (2020)
Revising the role of chromium on the surface of perovskite electrodes: Poison or promoter for the solid oxide electrolysis cell performance? Journal of Catalysis 34.
Journal Article
2 (10), pp. 7045 - 7055 (2019)
Influence of Surface State on the Electrochemical Performance of Nickel-Based Cermet Electrodes during Steam Electrolysis. ACS Applied Energy Materials 35.
Journal Article
9 (9), pp. 8325 - 8336 (2019)
Correlation Between Reactivity and Oxidation State of Cobalt Oxide Catalysts for CO Preferential Oxidation. ACS Catalysis 36.
Journal Article
249, pp. 218 - 226 (2019)
Evolution of zincian malachite synthesis by low temperature co-precipitation and its catalytic impact on the methanol synthesis. Applied Catalysis B 37.
Journal Article
58 (26), pp. 8709 - 87713 (2019)
Atomic‐Scale Observation of the Metal‐Promoter Interaction in Rh‐Based Syngas Upgrading Catalysts. Angewandte Chemie International Edition 38.
Journal Article
131 (26), pp. 8801 - 8805 (2019)
Atomic‐Scale Observation of the Metal‐Promoter Interaction in Rh‐Based Syngas Upgrading Catalysts. Angewandte Chemie 39.
Journal Article
9, pp. 6653 - 6663 (2019)
Experimental Activity Descriptors for Iridium-Based Catalysts for the Electrochemical Oxygen Evolution Reaction (OER). ACS Catalysis 40.
Journal Article
10 (8), pp. 2429 - 2443 (2019)
How to control selectivity in alkane oxidation? Chemical Science