We present the preparation and electrochemical analysis of a novel type of positive regenerative fuel cell electrode based on commercially available Ti felts with a Pt/Ir catalyst. Anodic oxidation of the Ti felts leads to the formation of a TiO2 nanotube layer. The high specific surface area allows for a particularly efficient utilization of the noble metal catalyst. Its loading in the nanoporous system is controlled accurately and minimized systematically by atomic layer deposition. The electrochemical activity towards water splitting of both metals is investigated in acidic media by cyclic voltammetry and steady-state electrolysis for various catalyst loadings. An optimal oxygen evolution reaction is found for a catalyst loading of 76 μg...
In this paper, a modified technique to prepare Pt-Ir catalyst layer on the proton exchange membrane ...
A major challenge in obtaining long-term durability in fuel cells is to discover catalyst supports t...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. The development of stable, cost...
We provide a direct comparison of two distinct methods of Ti felt surface treatment and Pt/Ir electr...
We establish a procedure for the fabrication of electrocatalytically active, nanoporous surfaces coa...
Optimized Pt-based methanol oxidation reaction (MOR) anodes are essential for commercial direct meth...
Carbon-coated titanium dioxide (TiO2-C) has received much attention as a catalyst support in proton ...
We establish a procedure for the fabrication of electrocatalytically active, nanoporous surfaces coa...
A long term challenge for society is to develop sustainable energy systems to reduce the dependence ...
Nanostructured Ir/TiO2 electrodes are investigated toward the oxygen evolution reaction (OER) from w...
We report a simple, scalable approach to improve interfacial characteristics of carbon semi-coated t...
Hydrogen-treated TiO2 nanotube (HTNT) arrays serve as highly ordered nanostructured electrode suppor...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Three different electrode materials for use in electrochemical reactors were examined in this thesis...
We explore electro-catalytic properties of a system consisting of platinum and palladium nanoparticl...
In this paper, a modified technique to prepare Pt-Ir catalyst layer on the proton exchange membrane ...
A major challenge in obtaining long-term durability in fuel cells is to discover catalyst supports t...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. The development of stable, cost...
We provide a direct comparison of two distinct methods of Ti felt surface treatment and Pt/Ir electr...
We establish a procedure for the fabrication of electrocatalytically active, nanoporous surfaces coa...
Optimized Pt-based methanol oxidation reaction (MOR) anodes are essential for commercial direct meth...
Carbon-coated titanium dioxide (TiO2-C) has received much attention as a catalyst support in proton ...
We establish a procedure for the fabrication of electrocatalytically active, nanoporous surfaces coa...
A long term challenge for society is to develop sustainable energy systems to reduce the dependence ...
Nanostructured Ir/TiO2 electrodes are investigated toward the oxygen evolution reaction (OER) from w...
We report a simple, scalable approach to improve interfacial characteristics of carbon semi-coated t...
Hydrogen-treated TiO2 nanotube (HTNT) arrays serve as highly ordered nanostructured electrode suppor...
Reducing the precious metal content of water oxidation catalysts for proton-exchange-membrane water ...
Three different electrode materials for use in electrochemical reactors were examined in this thesis...
We explore electro-catalytic properties of a system consisting of platinum and palladium nanoparticl...
In this paper, a modified technique to prepare Pt-Ir catalyst layer on the proton exchange membrane ...
A major challenge in obtaining long-term durability in fuel cells is to discover catalyst supports t...
© 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. The development of stable, cost...