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Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction

With the growing depletion of traditional fossil energy resources and ongoing enhanced awareness of environmental protection, research on electrochemical energy storage techniques like zinc–air batteries is receiving close attention. A significant amount of work on bifunctional catalysts is devoted...

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Autores principales: Tang, Wanqi, Mai, Jiarong, Liu, Lili, Yu, Nengfei, Fu, Lijun, Chen, Yuhui, Liu, Yankai, Wu, Yuping, van Ree, Teunis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448312/
https://www.ncbi.nlm.nih.gov/pubmed/37638171
http://dx.doi.org/10.1039/d3na00074e
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author Tang, Wanqi
Mai, Jiarong
Liu, Lili
Yu, Nengfei
Fu, Lijun
Chen, Yuhui
Liu, Yankai
Wu, Yuping
van Ree, Teunis
author_facet Tang, Wanqi
Mai, Jiarong
Liu, Lili
Yu, Nengfei
Fu, Lijun
Chen, Yuhui
Liu, Yankai
Wu, Yuping
van Ree, Teunis
author_sort Tang, Wanqi
collection PubMed
description With the growing depletion of traditional fossil energy resources and ongoing enhanced awareness of environmental protection, research on electrochemical energy storage techniques like zinc–air batteries is receiving close attention. A significant amount of work on bifunctional catalysts is devoted to improving OER and ORR reaction performance to pave the way for the commercialization of new batteries. Although most traditional energy storage systems perform very well, their durability in practical applications is receiving less attention, with issues such as carbon corrosion, reconstruction during the OER process, and degradation, which can seriously impact long-term use. To be able to design bifunctional materials in a bottom-up approach, a summary of different kinds of carbon materials and transition metal-based materials will be of assistance in selecting a suitable and highly active catalyst from the extensive existing non-precious materials database. Also, the modulation of current carbon materials, aimed at increasing defects and vacancies in carbon and electron distribution in metal–N–C is introduced to attain improved ORR performance of porous materials with fast mass and air transfer. Finally, the reconstruction of catalysts is introduced. The review concludes with comprehensive recommendations for obtaining high-performance and highly-durable catalysts.
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spelling pubmed-104483122023-08-25 Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction Tang, Wanqi Mai, Jiarong Liu, Lili Yu, Nengfei Fu, Lijun Chen, Yuhui Liu, Yankai Wu, Yuping van Ree, Teunis Nanoscale Adv Chemistry With the growing depletion of traditional fossil energy resources and ongoing enhanced awareness of environmental protection, research on electrochemical energy storage techniques like zinc–air batteries is receiving close attention. A significant amount of work on bifunctional catalysts is devoted to improving OER and ORR reaction performance to pave the way for the commercialization of new batteries. Although most traditional energy storage systems perform very well, their durability in practical applications is receiving less attention, with issues such as carbon corrosion, reconstruction during the OER process, and degradation, which can seriously impact long-term use. To be able to design bifunctional materials in a bottom-up approach, a summary of different kinds of carbon materials and transition metal-based materials will be of assistance in selecting a suitable and highly active catalyst from the extensive existing non-precious materials database. Also, the modulation of current carbon materials, aimed at increasing defects and vacancies in carbon and electron distribution in metal–N–C is introduced to attain improved ORR performance of porous materials with fast mass and air transfer. Finally, the reconstruction of catalysts is introduced. The review concludes with comprehensive recommendations for obtaining high-performance and highly-durable catalysts. RSC 2023-07-19 /pmc/articles/PMC10448312/ /pubmed/37638171 http://dx.doi.org/10.1039/d3na00074e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Tang, Wanqi
Mai, Jiarong
Liu, Lili
Yu, Nengfei
Fu, Lijun
Chen, Yuhui
Liu, Yankai
Wu, Yuping
van Ree, Teunis
Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title_full Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title_fullStr Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title_full_unstemmed Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title_short Recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
title_sort recent advances of bifunctional catalysts for zinc air batteries with stability considerations: from selecting materials to reconstruction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448312/
https://www.ncbi.nlm.nih.gov/pubmed/37638171
http://dx.doi.org/10.1039/d3na00074e
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