Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution

While H2 could be a renewable fuel, the large-scale preparation of cheap, active electrocatalysts for large-scale production remains a challenge. Here, authors use a rapid, solvent-free microwave pyrolysis method to synthesize nanostructured catalysts for large-scale industrial H2 production.

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Autores principales: Xueke Wu, Zuochao Wang, Dan Zhang, Yingnan Qin, Minghui Wang, Yi Han, Tianrong Zhan, Bo Yang, Shaoxiang Li, Jianping Lai, Lei Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/3dfdcf2cb4ff4db3b981f2a691624f6f
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spelling oai:doaj.org-article:3dfdcf2cb4ff4db3b981f2a691624f6f2021-12-02T16:10:51ZSolvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution10.1038/s41467-021-24322-22041-1723https://doaj.org/article/3dfdcf2cb4ff4db3b981f2a691624f6f2021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24322-2https://doaj.org/toc/2041-1723While H2 could be a renewable fuel, the large-scale preparation of cheap, active electrocatalysts for large-scale production remains a challenge. Here, authors use a rapid, solvent-free microwave pyrolysis method to synthesize nanostructured catalysts for large-scale industrial H2 production.Xueke WuZuochao WangDan ZhangYingnan QinMinghui WangYi HanTianrong ZhanBo YangShaoxiang LiJianping LaiLei WangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xueke Wu
Zuochao Wang
Dan Zhang
Yingnan Qin
Minghui Wang
Yi Han
Tianrong Zhan
Bo Yang
Shaoxiang Li
Jianping Lai
Lei Wang
Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
description While H2 could be a renewable fuel, the large-scale preparation of cheap, active electrocatalysts for large-scale production remains a challenge. Here, authors use a rapid, solvent-free microwave pyrolysis method to synthesize nanostructured catalysts for large-scale industrial H2 production.
format article
author Xueke Wu
Zuochao Wang
Dan Zhang
Yingnan Qin
Minghui Wang
Yi Han
Tianrong Zhan
Bo Yang
Shaoxiang Li
Jianping Lai
Lei Wang
author_facet Xueke Wu
Zuochao Wang
Dan Zhang
Yingnan Qin
Minghui Wang
Yi Han
Tianrong Zhan
Bo Yang
Shaoxiang Li
Jianping Lai
Lei Wang
author_sort Xueke Wu
title Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
title_short Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
title_full Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
title_fullStr Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
title_full_unstemmed Solvent-free microwave synthesis of ultra-small Ru-Mo2C@CNT with strong metal-support interaction for industrial hydrogen evolution
title_sort solvent-free microwave synthesis of ultra-small ru-mo2c@cnt with strong metal-support interaction for industrial hydrogen evolution
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/3dfdcf2cb4ff4db3b981f2a691624f6f
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AT boyang solventfreemicrowavesynthesisofultrasmallrumo2ccntwithstrongmetalsupportinteractionforindustrialhydrogenevolution
AT shaoxiangli solventfreemicrowavesynthesisofultrasmallrumo2ccntwithstrongmetalsupportinteractionforindustrialhydrogenevolution
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