Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation

Intermetallic nanoparticles comprised of early transition metals are attractive for fuel cell applications, but are generally limited to noble metal-based systems. Here, authors report non-precious early transition metal intermetallic nanoparticles with promising electrocatalytic performance for the...

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Autores principales: Guang Feng, Li An, Biao Li, Yuxuan Zuo, Jin Song, Fanghua Ning, Ning Jiang, Xiaopeng Cheng, Yuefei Zhang, Dingguo Xia
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/b6dca11b2fef407b98ec89f8c21ae31a
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spelling oai:doaj.org-article:b6dca11b2fef407b98ec89f8c21ae31a2021-12-02T14:38:44ZAtomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation10.1038/s41467-019-12509-72041-1723https://doaj.org/article/b6dca11b2fef407b98ec89f8c21ae31a2019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12509-7https://doaj.org/toc/2041-1723Intermetallic nanoparticles comprised of early transition metals are attractive for fuel cell applications, but are generally limited to noble metal-based systems. Here, authors report non-precious early transition metal intermetallic nanoparticles with promising electrocatalytic performance for the hydrazine oxidation reaction.Guang FengLi AnBiao LiYuxuan ZuoJin SongFanghua NingNing JiangXiaopeng ChengYuefei ZhangDingguo XiaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Guang Feng
Li An
Biao Li
Yuxuan Zuo
Jin Song
Fanghua Ning
Ning Jiang
Xiaopeng Cheng
Yuefei Zhang
Dingguo Xia
Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
description Intermetallic nanoparticles comprised of early transition metals are attractive for fuel cell applications, but are generally limited to noble metal-based systems. Here, authors report non-precious early transition metal intermetallic nanoparticles with promising electrocatalytic performance for the hydrazine oxidation reaction.
format article
author Guang Feng
Li An
Biao Li
Yuxuan Zuo
Jin Song
Fanghua Ning
Ning Jiang
Xiaopeng Cheng
Yuefei Zhang
Dingguo Xia
author_facet Guang Feng
Li An
Biao Li
Yuxuan Zuo
Jin Song
Fanghua Ning
Ning Jiang
Xiaopeng Cheng
Yuefei Zhang
Dingguo Xia
author_sort Guang Feng
title Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
title_short Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
title_full Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
title_fullStr Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
title_full_unstemmed Atomically ordered non-precious Co3Ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
title_sort atomically ordered non-precious co3ta intermetallic nanoparticles as high-performance catalysts for hydrazine electrooxidation
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/b6dca11b2fef407b98ec89f8c21ae31a
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AT biaoli atomicallyorderednonpreciousco3taintermetallicnanoparticlesashighperformancecatalystsforhydrazineelectrooxidation
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AT jinsong atomicallyorderednonpreciousco3taintermetallicnanoparticlesashighperformancecatalystsforhydrazineelectrooxidation
AT fanghuaning atomicallyorderednonpreciousco3taintermetallicnanoparticlesashighperformancecatalystsforhydrazineelectrooxidation
AT ningjiang atomicallyorderednonpreciousco3taintermetallicnanoparticlesashighperformancecatalystsforhydrazineelectrooxidation
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