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Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction
Oxygen evolution reaction (OER) under acidic conditions becomes of significant importance for the practical use of a proton exchange membrane (PEM) water electrolyzer. In particular, maximizing the mass activity of iridium (Ir) is one of the maiden issues. Herein, the authors discover that the Ir‐do...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238205/ https://www.ncbi.nlm.nih.gov/pubmed/36991522 http://dx.doi.org/10.1002/advs.202207695 |
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author | Thao, Nguyen Thi Thu Kim, Kwangsoo Ryu, Jeong Ho An, Byeong‐Seon Nayak, Arpan Kumar Jang, Jin Uk Na, Kyeong‐Han Choi, Won‐Youl Ali, Ghulam Chae, Keun Hwa Akbar, Muhammad Chung, Kyung Yoon Cho, Hyun‐Seok Park, Jong Hyeok Kim, Byung‐Hyun Han, HyukSu |
author_facet | Thao, Nguyen Thi Thu Kim, Kwangsoo Ryu, Jeong Ho An, Byeong‐Seon Nayak, Arpan Kumar Jang, Jin Uk Na, Kyeong‐Han Choi, Won‐Youl Ali, Ghulam Chae, Keun Hwa Akbar, Muhammad Chung, Kyung Yoon Cho, Hyun‐Seok Park, Jong Hyeok Kim, Byung‐Hyun Han, HyukSu |
author_sort | Thao, Nguyen Thi Thu |
collection | PubMed |
description | Oxygen evolution reaction (OER) under acidic conditions becomes of significant importance for the practical use of a proton exchange membrane (PEM) water electrolyzer. In particular, maximizing the mass activity of iridium (Ir) is one of the maiden issues. Herein, the authors discover that the Ir‐doped calcium copper titanate (CaCu₃Ti₄O₁₂, CCTO) perovskite exhibits ultrahigh mass activity up to 1000 A g(Ir) (−1) for the acidic OER, which is 66 times higher than that of the benchmark catalyst, IrO(2). By substituting Ti with Ir in CCTO, metal‐oxygen (M‐O) covalency can be significantly increased leading to the reduced energy barrier for charge transfer. Further, highly polarizable CCTO perovskite referred to as “colossal dielectric”, possesses low defect formation energy for oxygen vacancy inducing a high number of oxygen vacancies in Ir‐doped CCTO (Ir‐CCTO). Electron transfer occurs from the oxygen vacancies and Ti to the substituted Ir consequentially resulting in the electron‐rich Ir and ‐deficient Ti sites. Thus, favorable adsorptions of oxygen intermediates can take place at Ti sites while the Ir ensures efficient charge supplies during OER, taking a top position of the volcano plot. Simultaneously, the introduced Ir dopants form nanoclusters at the surface of Ir‐CCTO, which can boost catalytic activity for the acidic OER. |
format | Online Article Text |
id | pubmed-10238205 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-102382052023-06-04 Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction Thao, Nguyen Thi Thu Kim, Kwangsoo Ryu, Jeong Ho An, Byeong‐Seon Nayak, Arpan Kumar Jang, Jin Uk Na, Kyeong‐Han Choi, Won‐Youl Ali, Ghulam Chae, Keun Hwa Akbar, Muhammad Chung, Kyung Yoon Cho, Hyun‐Seok Park, Jong Hyeok Kim, Byung‐Hyun Han, HyukSu Adv Sci (Weinh) Research Articles Oxygen evolution reaction (OER) under acidic conditions becomes of significant importance for the practical use of a proton exchange membrane (PEM) water electrolyzer. In particular, maximizing the mass activity of iridium (Ir) is one of the maiden issues. Herein, the authors discover that the Ir‐doped calcium copper titanate (CaCu₃Ti₄O₁₂, CCTO) perovskite exhibits ultrahigh mass activity up to 1000 A g(Ir) (−1) for the acidic OER, which is 66 times higher than that of the benchmark catalyst, IrO(2). By substituting Ti with Ir in CCTO, metal‐oxygen (M‐O) covalency can be significantly increased leading to the reduced energy barrier for charge transfer. Further, highly polarizable CCTO perovskite referred to as “colossal dielectric”, possesses low defect formation energy for oxygen vacancy inducing a high number of oxygen vacancies in Ir‐doped CCTO (Ir‐CCTO). Electron transfer occurs from the oxygen vacancies and Ti to the substituted Ir consequentially resulting in the electron‐rich Ir and ‐deficient Ti sites. Thus, favorable adsorptions of oxygen intermediates can take place at Ti sites while the Ir ensures efficient charge supplies during OER, taking a top position of the volcano plot. Simultaneously, the introduced Ir dopants form nanoclusters at the surface of Ir‐CCTO, which can boost catalytic activity for the acidic OER. John Wiley and Sons Inc. 2023-03-29 /pmc/articles/PMC10238205/ /pubmed/36991522 http://dx.doi.org/10.1002/advs.202207695 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Articles Thao, Nguyen Thi Thu Kim, Kwangsoo Ryu, Jeong Ho An, Byeong‐Seon Nayak, Arpan Kumar Jang, Jin Uk Na, Kyeong‐Han Choi, Won‐Youl Ali, Ghulam Chae, Keun Hwa Akbar, Muhammad Chung, Kyung Yoon Cho, Hyun‐Seok Park, Jong Hyeok Kim, Byung‐Hyun Han, HyukSu Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title | Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title_full | Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title_fullStr | Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title_full_unstemmed | Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title_short | Colossal Dielectric Perovskites of Calcium Copper Titanate (CaCu(3)Ti(4)O(12)) with Low‐Iridium Dopants Enables Ultrahigh Mass Activity for the Acidic Oxygen Evolution Reaction |
title_sort | colossal dielectric perovskites of calcium copper titanate (cacu(3)ti(4)o(12)) with low‐iridium dopants enables ultrahigh mass activity for the acidic oxygen evolution reaction |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238205/ https://www.ncbi.nlm.nih.gov/pubmed/36991522 http://dx.doi.org/10.1002/advs.202207695 |
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