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Dive into the research topics where Daniel F. Abbott is active.

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Featured researches published by Daniel F. Abbott.


Advanced Functional Materials | 2018

Highly Active Nanoperovskite Catalysts for Oxygen Evolution Reaction: Insights into Activity and Stability of Ba0.5Sr0.5Co0.8Fe0.2O2+δ and PrBaCo2O5+δ

Bae-Jung Kim; Xi Cheng; Daniel F. Abbott; Emiliana Fabbri; Francesco Bozza; Thomas Graule; Ivano Eligio Castelli; Luke Wiles; Nemanja Danilovic; Katherine E. Ayers; Nicola Marzari; Thomas J. Schmidt

It is shown that producing PrBaCo2O5 and Ba0.5Sr0.5Co0.8Fe0.2O3 nanoparticle by a scalable synthesis method leads to high mass activities for the oxygen evolution reaction with outstanding improvements by 10 and 50 times, respectively, compared to those prepared via the state of the art synthesis method. Here, detailed comparisons at both laboratory and industrial scales show that Ba0.5Sr0.5Co0.8Fe0.2O3 appears to be the most active and stable perovskite catalyst under alkaline conditions, while PrBaCo2O6 reveals thermodynamic instability described by the density functional theory based Pourbaix diagrams highlighting cation dissolution under oxygen evolution conditions. Operando Xray absorption spectroscopy is used in parallel to monitor electronic and structural changes of the catalysts during oxygen evolution reaction. The exceptional BSCF functional stability can be correlated to its thermodynamic metastability under oxygen evolution conditions as highlighted by Pourbaix diagram analysis. BSCF is able to dynamically self reconstruct its surface, leading to formation of Co based oxyhydroxide layers while retaining its structural stability. Differently, PBCO demonstrates a high initial oxygen evolution reaction activity while it undergoes a degradation process considering its thermodynamic instability under oxygen evolution conditions as anticipated by its Pourbaix diagram. Overall, this work demonstrates a synergetic approach of using both experimental and theoretical studies to understand the behavior of perovskite catalysts.


Chemistry of Materials | 2016

Iridium Oxide for the Oxygen Evolution Reaction: Correlation between Particle Size, Morphology, and the Surface Hydroxo Layer from Operando XAS

Daniel F. Abbott; Dmitry Lebedev; Kay Waltar; Mauro Povia; Maarten Nachtegaal; Emiliana Fabbri; Christophe Copéret; Thomas J. Schmidt


Journal of The Electrochemical Society | 2011

Analysis of Double Layer and Adsorption Effects at the Alkaline Polymer Electrolyte-Electrode Interface

Murat Ünlü; Daniel F. Abbott; Nagappan Ramaswamy; Xiaoming Ren; Sanjeev Mukerjee; Paul A. Kohl


ACS Catalysis | 2017

IrO2-TiO2: A High-Surface-Area, Active, and Stable Electrocatalyst for the Oxygen Evolution Reaction

Emma Oakton; Dmitry Lebedev; Mauro Povia; Daniel F. Abbott; Emiliana Fabbri; Alexey Fedorov; Maarten Nachtegaal; Christophe Copéret; T. Schmidt


ECS Electrochemistry Letters | 2012

Mass Transport and Oxygen Reduction Kinetics at an Anion Exchange Membrane Interface: Microelectrode Studies on Effect of Carbonate Exchange

Iromie Gunasekara; Myoungseok Lee; Daniel F. Abbott; Sanjeev Mukerjee


Journal of The Electrochemical Society | 2016

Electrochemical Flow-Cell Setup for In Situ X-ray Investigations I. Cell for SAXS and XAS at Synchrotron Facilities

Tobias Binninger; Emiliana Fabbri; Alexandra Patru; Marios Garganourakis; Jun Han; Daniel F. Abbott; Olha Sereda; R. Kötz; Andreas Menzel; Maarten Nachtegaal; T. Schmidt


ACS Catalysis | 2017

Unraveling Thermodynamics, Stability, and Oxygen Evolution Activity of Strontium Ruthenium Perovskite Oxide

Bae-Jung Kim; Daniel F. Abbott; Xi Cheng; Emiliana Fabbri; Maarten Nachtegaal; Francesco Bozza; Ivano Eligio Castelli; Dmitry Lebedev; Robin Schäublin; Christophe Copéret; Thomas Graule; Nicola Marzari; Thomas J. Schmidt


RSC Advances | 2015

Oxygen reduction on nanocrystalline ruthenia – local structure effects

Daniel F. Abbott; Sanjeev Mukerjee; Valery Petrykin; Zdeněk Bastl; Niels Bendtsen Halck; Jan Rossmeisl; Petr Krtil


Journal of The Electrochemical Society | 2015

Selective Chlorine Evolution Catalysts Based on Mg-Doped Nanoparticulate Ruthenium Dioxide

Daniel F. Abbott; Valery Petrykin; Maki Okube; Zdenk Bastl; Sanjeev Mukerjee; Petr Krtil


Journal of The Electrochemical Society | 2017

Durability of Unsupported Pt-Ni Aerogels in PEFC Cathodes

Sebastian Henning; Juan Herranz; Hiroshi Ishikawa; Bae Jung Kim; Daniel F. Abbott; Laura Kühn; Alexander Eychmüller; Thomas J. Schmidt

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Emiliana Fabbri

National Institute for Materials Science

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Sanjeev Mukerjee

Sandia National Laboratories

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Sanjeev Mukerjee

Sandia National Laboratories

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Mauro Povia

Istituto Italiano di Tecnologia

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