Literature DB >> 34161089

Constant Change: Exploring Dynamic Oxygen Evolution Reaction Catalysis and Material Transformations in Strontium Zinc Iridate Perovskite in Acid.

Jane Edgington1, Neil Schweitzer1,2, Selim Alayoglu2, Linsey C Seitz1.   

Abstract

While iridium-based perovskites have been identified as promising candidates for the oxygen evolution reaction (OER) in proton exchange membrane (PEM) electrolyzer applications, an improved fundamental understanding of these highly dynamic materials under reaction conditions is needed to inform more robust future catalyst design. Herein, we study the highly active SrIr0.8Zn0.2O3 perovskite for the OER in acid by employing electrochemical experiments with in situ and ex situ characterization techniques to understand the dynamic nature of this material at both short and long time scales. We observe initial intrinsic OER activity improvement with electrochemical cycling as well as an initial increase of Ir oxidation state under OER conditions via in situ X-ray absorption spectroscopy. We discover that the SrIr0.8Zn0.2O3 perovskite experiences an OER-induced metal to insulator transition (MIT) with extensive electrochemical cycling, caused by surface reorganization and changes to the material crystallinity that occur with exposure to an acidic and oxidizing environment. Our novel identification of an OER-induced MIT for iridate perovskites reveals an additional stability concern for iridate catalysts which are known to experience material dissolution challenges; this work ultimately aims to inform future catalyst material design for PEM water electrolysis applications.

Entities:  

Year:  2021        PMID: 34161089     DOI: 10.1021/jacs.1c04332

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  3 in total

Review 1.  Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments.

Authors:  Marian Chatenet; Bruno G Pollet; Dario R Dekel; Fabio Dionigi; Jonathan Deseure; Pierre Millet; Richard D Braatz; Martin Z Bazant; Michael Eikerling; Iain Staffell; Paul Balcombe; Yang Shao-Horn; Helmut Schäfer
Journal:  Chem Soc Rev       Date:  2022-06-06       Impact factor: 60.615

2.  Regulating the electronic structures of mixed B-site pyrochlore to enhance the turnover frequency in water oxidation.

Authors:  Cheng Zhang; Fangfang Wang; Beichen Xiong; Hong Yang
Journal:  Nano Converg       Date:  2022-05-18

3.  Highly active and stable surface structure for oxygen evolution reaction originating from balanced dissolution and strong connectivity in BaIrO3 solid solutions.

Authors:  Shigeto Hirai; Shunsuke Yagi; He-Chan Oh; Yoshiki Sato; Wei Liu; En-Pei Liu; Wei-Tin Chen; Akira Miura; Masanori Nagao; Tomoya Ohno; Takeshi Matsuda
Journal:  RSC Adv       Date:  2022-08-26       Impact factor: 4.036

  3 in total

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