Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell

Development of fuel cells and metal-air batteries is hindered by electrocatalyst performance, which can be enhanced with uniform and atomically dispersed active sites. Here the authors report an iron-based electrocatalyst for oxygen reduction in cathodes for a zinc-air battery and a hydrogen-air fue...

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Autores principales: Yuanjun Chen, Shufang Ji, Shu Zhao, Wenxing Chen, Juncai Dong, Weng-Chon Cheong, Rongan Shen, Xiaodong Wen, Lirong Zheng, Alexandre I. Rykov, Shichang Cai, Haolin Tang, Zhongbin Zhuang, Chen Chen, Qing Peng, Dingsheng Wang, Yadong Li
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/47acdc5c3ac64e23b0284ae22844e973
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spelling oai:doaj.org-article:47acdc5c3ac64e23b0284ae22844e9732021-12-02T16:56:41ZEnhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell10.1038/s41467-018-07850-22041-1723https://doaj.org/article/47acdc5c3ac64e23b0284ae22844e9732018-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07850-2https://doaj.org/toc/2041-1723Development of fuel cells and metal-air batteries is hindered by electrocatalyst performance, which can be enhanced with uniform and atomically dispersed active sites. Here the authors report an iron-based electrocatalyst for oxygen reduction in cathodes for a zinc-air battery and a hydrogen-air fuel cell.Yuanjun ChenShufang JiShu ZhaoWenxing ChenJuncai DongWeng-Chon CheongRongan ShenXiaodong WenLirong ZhengAlexandre I. RykovShichang CaiHaolin TangZhongbin ZhuangChen ChenQing PengDingsheng WangYadong LiNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yuanjun Chen
Shufang Ji
Shu Zhao
Wenxing Chen
Juncai Dong
Weng-Chon Cheong
Rongan Shen
Xiaodong Wen
Lirong Zheng
Alexandre I. Rykov
Shichang Cai
Haolin Tang
Zhongbin Zhuang
Chen Chen
Qing Peng
Dingsheng Wang
Yadong Li
Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
description Development of fuel cells and metal-air batteries is hindered by electrocatalyst performance, which can be enhanced with uniform and atomically dispersed active sites. Here the authors report an iron-based electrocatalyst for oxygen reduction in cathodes for a zinc-air battery and a hydrogen-air fuel cell.
format article
author Yuanjun Chen
Shufang Ji
Shu Zhao
Wenxing Chen
Juncai Dong
Weng-Chon Cheong
Rongan Shen
Xiaodong Wen
Lirong Zheng
Alexandre I. Rykov
Shichang Cai
Haolin Tang
Zhongbin Zhuang
Chen Chen
Qing Peng
Dingsheng Wang
Yadong Li
author_facet Yuanjun Chen
Shufang Ji
Shu Zhao
Wenxing Chen
Juncai Dong
Weng-Chon Cheong
Rongan Shen
Xiaodong Wen
Lirong Zheng
Alexandre I. Rykov
Shichang Cai
Haolin Tang
Zhongbin Zhuang
Chen Chen
Qing Peng
Dingsheng Wang
Yadong Li
author_sort Yuanjun Chen
title Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
title_short Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
title_full Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
title_fullStr Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
title_full_unstemmed Enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
title_sort enhanced oxygen reduction with single-atomic-site iron catalysts for a zinc-air battery and hydrogen-air fuel cell
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/47acdc5c3ac64e23b0284ae22844e973
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