Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization

Sintering supported metal nanoparticles is the common route to the deactivation of industrial heterogeneous catalysts. Here, the authors report a carbon atomization process that allows one not only to redisperse metal nanoparticles, but also to recover deactivated catalysts.

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Autores principales: Huang Zhou, Yafei Zhao, Jie Xu, Haoran Sun, Zhijun Li, Wei Liu, Tongwei Yuan, Xiaoqian Wang, Weng-Chon Cheong, Zhiyuan Wang, Xin Wang, Chao Zhao, Yancai Yao, Wenyu Wang, Fangyao Zhou, Min Chen, Benjin Jin, Rongbo Sun, Jing Liu, Xun Hong, Tao Yao, Shiqiang Wei, Jun Luo, Yuen Wu
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/3d67ca3b892346efa4e083b463ba9170
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spelling oai:doaj.org-article:3d67ca3b892346efa4e083b463ba91702021-12-02T13:24:05ZRecover the activity of sintered supported catalysts by nitrogen-doped carbon atomization10.1038/s41467-019-14223-w2041-1723https://doaj.org/article/3d67ca3b892346efa4e083b463ba91702020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-14223-whttps://doaj.org/toc/2041-1723Sintering supported metal nanoparticles is the common route to the deactivation of industrial heterogeneous catalysts. Here, the authors report a carbon atomization process that allows one not only to redisperse metal nanoparticles, but also to recover deactivated catalysts.Huang ZhouYafei ZhaoJie XuHaoran SunZhijun LiWei LiuTongwei YuanWei LiuXiaoqian WangWeng-Chon CheongZhiyuan WangXin WangChao ZhaoYancai YaoWenyu WangFangyao ZhouMin ChenBenjin JinRongbo SunJing LiuXun HongTao YaoShiqiang WeiJun LuoYuen WuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Huang Zhou
Yafei Zhao
Jie Xu
Haoran Sun
Zhijun Li
Wei Liu
Tongwei Yuan
Wei Liu
Xiaoqian Wang
Weng-Chon Cheong
Zhiyuan Wang
Xin Wang
Chao Zhao
Yancai Yao
Wenyu Wang
Fangyao Zhou
Min Chen
Benjin Jin
Rongbo Sun
Jing Liu
Xun Hong
Tao Yao
Shiqiang Wei
Jun Luo
Yuen Wu
Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
description Sintering supported metal nanoparticles is the common route to the deactivation of industrial heterogeneous catalysts. Here, the authors report a carbon atomization process that allows one not only to redisperse metal nanoparticles, but also to recover deactivated catalysts.
format article
author Huang Zhou
Yafei Zhao
Jie Xu
Haoran Sun
Zhijun Li
Wei Liu
Tongwei Yuan
Wei Liu
Xiaoqian Wang
Weng-Chon Cheong
Zhiyuan Wang
Xin Wang
Chao Zhao
Yancai Yao
Wenyu Wang
Fangyao Zhou
Min Chen
Benjin Jin
Rongbo Sun
Jing Liu
Xun Hong
Tao Yao
Shiqiang Wei
Jun Luo
Yuen Wu
author_facet Huang Zhou
Yafei Zhao
Jie Xu
Haoran Sun
Zhijun Li
Wei Liu
Tongwei Yuan
Wei Liu
Xiaoqian Wang
Weng-Chon Cheong
Zhiyuan Wang
Xin Wang
Chao Zhao
Yancai Yao
Wenyu Wang
Fangyao Zhou
Min Chen
Benjin Jin
Rongbo Sun
Jing Liu
Xun Hong
Tao Yao
Shiqiang Wei
Jun Luo
Yuen Wu
author_sort Huang Zhou
title Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
title_short Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
title_full Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
title_fullStr Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
title_full_unstemmed Recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
title_sort recover the activity of sintered supported catalysts by nitrogen-doped carbon atomization
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/3d67ca3b892346efa4e083b463ba9170
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