Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts

Large scale production of thermally stable single-atom catalysts (SACs) remains challenging. Here, the authors report scalable synthesis of Ru SACs by heating physical mixture of commercial RuO2 and Fe-containing support, which is significantly promoted by strong metal-support interaction.

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Autores principales: Kaipeng Liu, Xintian Zhao, Guoqing Ren, Tao Yang, Yujing Ren, Adam Fraser Lee, Yang Su, Xiaoli Pan, Jingcai Zhang, Zhiqiang Chen, Jingyi Yang, Xiaoyan Liu, Tong Zhou, Wei Xi, Jun Luo, Chaobin Zeng, Hiroaki Matsumoto, Wei Liu, Qike Jiang, Karen Wilson, Aiqin Wang, Botao Qiao, Weizhen Li, Tao Zhang
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/aad4978ae09b4d47bf7f614b68802810
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spelling oai:doaj.org-article:aad4978ae09b4d47bf7f614b688028102021-12-02T14:41:15ZStrong metal-support interaction promoted scalable production of thermally stable single-atom catalysts10.1038/s41467-020-14984-92041-1723https://doaj.org/article/aad4978ae09b4d47bf7f614b688028102020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14984-9https://doaj.org/toc/2041-1723Large scale production of thermally stable single-atom catalysts (SACs) remains challenging. Here, the authors report scalable synthesis of Ru SACs by heating physical mixture of commercial RuO2 and Fe-containing support, which is significantly promoted by strong metal-support interaction.Kaipeng LiuXintian ZhaoGuoqing RenTao YangYujing RenAdam Fraser LeeYang SuXiaoli PanJingcai ZhangZhiqiang ChenJingyi YangXiaoyan LiuTong ZhouWei XiJun LuoChaobin ZengHiroaki MatsumotoWei LiuQike JiangKaren WilsonAiqin WangBotao QiaoWeizhen LiTao ZhangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kaipeng Liu
Xintian Zhao
Guoqing Ren
Tao Yang
Yujing Ren
Adam Fraser Lee
Yang Su
Xiaoli Pan
Jingcai Zhang
Zhiqiang Chen
Jingyi Yang
Xiaoyan Liu
Tong Zhou
Wei Xi
Jun Luo
Chaobin Zeng
Hiroaki Matsumoto
Wei Liu
Qike Jiang
Karen Wilson
Aiqin Wang
Botao Qiao
Weizhen Li
Tao Zhang
Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
description Large scale production of thermally stable single-atom catalysts (SACs) remains challenging. Here, the authors report scalable synthesis of Ru SACs by heating physical mixture of commercial RuO2 and Fe-containing support, which is significantly promoted by strong metal-support interaction.
format article
author Kaipeng Liu
Xintian Zhao
Guoqing Ren
Tao Yang
Yujing Ren
Adam Fraser Lee
Yang Su
Xiaoli Pan
Jingcai Zhang
Zhiqiang Chen
Jingyi Yang
Xiaoyan Liu
Tong Zhou
Wei Xi
Jun Luo
Chaobin Zeng
Hiroaki Matsumoto
Wei Liu
Qike Jiang
Karen Wilson
Aiqin Wang
Botao Qiao
Weizhen Li
Tao Zhang
author_facet Kaipeng Liu
Xintian Zhao
Guoqing Ren
Tao Yang
Yujing Ren
Adam Fraser Lee
Yang Su
Xiaoli Pan
Jingcai Zhang
Zhiqiang Chen
Jingyi Yang
Xiaoyan Liu
Tong Zhou
Wei Xi
Jun Luo
Chaobin Zeng
Hiroaki Matsumoto
Wei Liu
Qike Jiang
Karen Wilson
Aiqin Wang
Botao Qiao
Weizhen Li
Tao Zhang
author_sort Kaipeng Liu
title Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
title_short Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
title_full Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
title_fullStr Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
title_full_unstemmed Strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
title_sort strong metal-support interaction promoted scalable production of thermally stable single-atom catalysts
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/aad4978ae09b4d47bf7f614b68802810
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