Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution

Alloy anode materials are receiving renewed interest. Here the authors show the design of Ge-Zn nanofibers for lithium ion batteries. Featured by a homogeneous composition at the atomic level and other favorable structural attributes, the materials allow for impressive electrochemical performance.

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Autores principales: Gyujin Song, Jun Young Cheong, Chanhoon Kim, Langli Luo, Chihyun Hwang, Sungho Choi, Jaegeon Ryu, Sungho Kim, Woo-Jin Song, Hyun-Kon Song, Chongmin Wang, Il-Doo Kim, Soojin Park
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/f9ae7b05cb8a4fd6b49c7588c5c8b82a
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spelling oai:doaj.org-article:f9ae7b05cb8a4fd6b49c7588c5c8b82a2021-12-02T16:58:16ZAtomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution10.1038/s41467-019-10305-x2041-1723https://doaj.org/article/f9ae7b05cb8a4fd6b49c7588c5c8b82a2019-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10305-xhttps://doaj.org/toc/2041-1723Alloy anode materials are receiving renewed interest. Here the authors show the design of Ge-Zn nanofibers for lithium ion batteries. Featured by a homogeneous composition at the atomic level and other favorable structural attributes, the materials allow for impressive electrochemical performance.Gyujin SongJun Young CheongChanhoon KimLangli LuoChihyun HwangSungho ChoiJaegeon RyuSungho KimWoo-Jin SongHyun-Kon SongChongmin WangIl-Doo KimSoojin ParkNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gyujin Song
Jun Young Cheong
Chanhoon Kim
Langli Luo
Chihyun Hwang
Sungho Choi
Jaegeon Ryu
Sungho Kim
Woo-Jin Song
Hyun-Kon Song
Chongmin Wang
Il-Doo Kim
Soojin Park
Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
description Alloy anode materials are receiving renewed interest. Here the authors show the design of Ge-Zn nanofibers for lithium ion batteries. Featured by a homogeneous composition at the atomic level and other favorable structural attributes, the materials allow for impressive electrochemical performance.
format article
author Gyujin Song
Jun Young Cheong
Chanhoon Kim
Langli Luo
Chihyun Hwang
Sungho Choi
Jaegeon Ryu
Sungho Kim
Woo-Jin Song
Hyun-Kon Song
Chongmin Wang
Il-Doo Kim
Soojin Park
author_facet Gyujin Song
Jun Young Cheong
Chanhoon Kim
Langli Luo
Chihyun Hwang
Sungho Choi
Jaegeon Ryu
Sungho Kim
Woo-Jin Song
Hyun-Kon Song
Chongmin Wang
Il-Doo Kim
Soojin Park
author_sort Gyujin Song
title Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
title_short Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
title_full Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
title_fullStr Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
title_full_unstemmed Atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
title_sort atomic-scale combination of germanium-zinc nanofibers for structural and electrochemical evolution
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/f9ae7b05cb8a4fd6b49c7588c5c8b82a
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AT chanhoonkim atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
AT langliluo atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
AT chihyunhwang atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
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AT hyunkonsong atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
AT chongminwang atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
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AT soojinpark atomicscalecombinationofgermaniumzincnanofibersforstructuralandelectrochemicalevolution
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