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Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries

Developing efficient energy storage and conversion applications is vital to address fossil energy depletion and global warming. Li–O(2) batteries are one of the most promising devices because of their ultra-high energy density. To overcome their practical difficulties including low specific capaciti...

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Autores principales: Xia, Qing, Li, Deyuan, Zhao, Lanling, Wang, Jun, Long, Yuxin, Han, Xue, Zhou, Zhaorui, Liu, Yao, Zhang, Yiming, Li, Yebing, Adam, Abulgasim Ahmed Abbaker, Chou, Shulei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8905958/
https://www.ncbi.nlm.nih.gov/pubmed/35382475
http://dx.doi.org/10.1039/d1sc05781b
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author Xia, Qing
Li, Deyuan
Zhao, Lanling
Wang, Jun
Long, Yuxin
Han, Xue
Zhou, Zhaorui
Liu, Yao
Zhang, Yiming
Li, Yebing
Adam, Abulgasim Ahmed Abbaker
Chou, Shulei
author_facet Xia, Qing
Li, Deyuan
Zhao, Lanling
Wang, Jun
Long, Yuxin
Han, Xue
Zhou, Zhaorui
Liu, Yao
Zhang, Yiming
Li, Yebing
Adam, Abulgasim Ahmed Abbaker
Chou, Shulei
author_sort Xia, Qing
collection PubMed
description Developing efficient energy storage and conversion applications is vital to address fossil energy depletion and global warming. Li–O(2) batteries are one of the most promising devices because of their ultra-high energy density. To overcome their practical difficulties including low specific capacities, high overpotentials, limited rate capability and poor cycle stability, an intensive search for highly efficient electrocatalysts has been performed. Recently, it has been reported that heterostructured catalysts exhibit significantly enhanced activities toward the oxygen reduction reaction and oxygen evolution reaction, and their excellent performance is not only related to the catalyst materials themselves but also the special hetero-interfaces. Herein, an overview focused on the electrocatalytic functions of heterostructured catalysts for non-aqueous Li–O(2) batteries is presented by summarizing recent research progress. Reduction mechanisms of Li–O(2) batteries are first introduced, followed by a detailed discussion on the typical performance enhancement mechanisms of the heterostructured catalysts with different phases and heterointerfaces, and the various heterostructured catalysts applied in Li–O(2) batteries are also intensively discussed. Finally, the existing problems and development perspectives on the heterostructure applications are presented.
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spelling pubmed-89059582022-04-04 Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries Xia, Qing Li, Deyuan Zhao, Lanling Wang, Jun Long, Yuxin Han, Xue Zhou, Zhaorui Liu, Yao Zhang, Yiming Li, Yebing Adam, Abulgasim Ahmed Abbaker Chou, Shulei Chem Sci Chemistry Developing efficient energy storage and conversion applications is vital to address fossil energy depletion and global warming. Li–O(2) batteries are one of the most promising devices because of their ultra-high energy density. To overcome their practical difficulties including low specific capacities, high overpotentials, limited rate capability and poor cycle stability, an intensive search for highly efficient electrocatalysts has been performed. Recently, it has been reported that heterostructured catalysts exhibit significantly enhanced activities toward the oxygen reduction reaction and oxygen evolution reaction, and their excellent performance is not only related to the catalyst materials themselves but also the special hetero-interfaces. Herein, an overview focused on the electrocatalytic functions of heterostructured catalysts for non-aqueous Li–O(2) batteries is presented by summarizing recent research progress. Reduction mechanisms of Li–O(2) batteries are first introduced, followed by a detailed discussion on the typical performance enhancement mechanisms of the heterostructured catalysts with different phases and heterointerfaces, and the various heterostructured catalysts applied in Li–O(2) batteries are also intensively discussed. Finally, the existing problems and development perspectives on the heterostructure applications are presented. The Royal Society of Chemistry 2021-12-22 /pmc/articles/PMC8905958/ /pubmed/35382475 http://dx.doi.org/10.1039/d1sc05781b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Xia, Qing
Li, Deyuan
Zhao, Lanling
Wang, Jun
Long, Yuxin
Han, Xue
Zhou, Zhaorui
Liu, Yao
Zhang, Yiming
Li, Yebing
Adam, Abulgasim Ahmed Abbaker
Chou, Shulei
Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title_full Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title_fullStr Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title_full_unstemmed Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title_short Recent advances in heterostructured cathodic electrocatalysts for non-aqueous Li–O(2) batteries
title_sort recent advances in heterostructured cathodic electrocatalysts for non-aqueous li–o(2) batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8905958/
https://www.ncbi.nlm.nih.gov/pubmed/35382475
http://dx.doi.org/10.1039/d1sc05781b
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