Alexandra Patru
Centre national de la recherche scientifique
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Publication
Featured researches published by Alexandra Patru.
Catalysis Science & Technology | 2018
Rhiyaad Mohamed; Tobias Binninger; Patricia J. Kooyman; Armin Hoell; Emiliana Fabbri; Alexandra Patru; Adrian Heinritz; Thomas J. Schmidt; Pieter Levecque
Understanding the influence of the support on the electrocatalytic behaviour of platinum is key to the development of novel Pt/oxide catalysts for the oxygen reduction reaction (ORR). For studies to isolate these effects, highly dispersed supported Pt nanoparticles with well-controlled particle sizes are required. In this study, we demonstrate a novel preparation process for Pt/oxide catalysts, with small Pt nanoparticles (2.5–3.5 nm), supported on a commercial Sb–SnO2 (ATO) nanopowder, with a very high utilization of the Pt-precursor. The organometallic chemical deposition method produces catalyst nanoparticles with a homogeneous distribution over the surface of the support even at high Pt metal loadings. Additionally, by using a mild hydrogen reduction treatment of the oxide support prior to Pt deposition, significantly smaller Pt nanoparticles were obtained with an outstanding mass-specific electrochemically active surface area exceeding 100 m2 g−1. Furthermore, by varying the Pt metal loading, several fundamental electrocatalytic effects that strongly influence the Pt/ATO system were distinguished. Good electrochemical stability during high-potential cycling was observed and was attributed to potential-dependent in situ conductivity switching of the ATO support. In turn, ORR activities of the Pt/ATO catalysts were found to be influenced by a combination of Pt particle size effects, ATO support in situ conductivity limitations at PEFC operation potentials, and electrocatalytic metal–support interactions. Therefore, in addition to demonstrating a powerful method for the preparation of exceptionally high surface area Pt/oxide catalysts, the present study contributes to the detailed understanding of the interplay between various phenomena that influence the electrocatalytic activity and stability of Pt/oxide systems for the ORR. Furthermore, the novel preparation approach for Pt/metal oxide catalysts could be of major interest for catalyst preparation in other fields of electrocatalysis and heterogeneous catalysis.
Nano Energy | 2016
Juan Herranz; Julien Durst; Emiliana Fabbri; Alexandra Patru; Xi Cheng; Anastasia A. Permyakova; T. Schmidt
Journal of The Electrochemical Society | 2013
Ouassim Ghodbane; Mélanie Louro; Laura Coustan; Alexandra Patru; Frédéric Favier
Journal of The Electrochemical Society | 2016
Tobias Binninger; Emiliana Fabbri; Alexandra Patru; Marios Garganourakis; Jun Han; Daniel F. Abbott; Olha Sereda; R. Kötz; Andreas Menzel; Maarten Nachtegaal; T. Schmidt
Chemistry of Materials | 2017
Tobias Binninger; Rhiyaad Mohamed; Alexandra Patru; Kay Waltar; Eike Gericke; Xenia Tuaev; Emiliana Fabbri; Pieter Levecque; Armin Hoell; Thomas J. Schmidt
Physical review applied | 2015
Tobias Binninger; Marios Garganourakis; Jun Han; Alexandra Patru; Emiliana Fabbri; Olha Sereda; R. Kötz; Andreas Menzel; Thomas J. Schmidt
Journal of The Electrochemical Society | 2016
Jérémy Tillier; Tobias Binninger; Marios Garganourakis; Alexandra Patru; Emiliana Fabbri; Thomas J. Schmidt; Olha Sereda
PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016
Alexandra Patru; Julien Durst; Juan Herranz; Anastasia A. Permyakova; Thomas J. Schmidt
Meeting Abstracts | 2015
Susan M. Taylor; Alexandra Patru; T. Schmidt
ECS Conference on Electrochemical Energy Conversion & Storage with SOFC-XIV (July 26-31, 2015) | 2015
Alexandra Patru; Emiliana Fabbri; Ruediger Kötz; T. Schmidt