High power rechargeable magnesium/iodine battery chemistry

Rechargeable magnesium batteries suffer from slow solid-state Mg2+diffusion in the intercalation cathode. Here the authors show magnesium/iodine chemistry in which the liquid–solid two-phase reaction leads to increased rate capabilities by overcoming the sluggish kinetics.

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Autores principales: Huajun Tian, Tao Gao, Xiaogang Li, Xiwen Wang, Chao Luo, Xiulin Fan, Chongyin Yang, Liumin Suo, Zhaohui Ma, Weiqiang Han, Chunsheng Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/b822196302f84a7ebf087bc27b298160
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spelling oai:doaj.org-article:b822196302f84a7ebf087bc27b2981602021-12-02T14:42:51ZHigh power rechargeable magnesium/iodine battery chemistry10.1038/ncomms140832041-1723https://doaj.org/article/b822196302f84a7ebf087bc27b2981602017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms14083https://doaj.org/toc/2041-1723Rechargeable magnesium batteries suffer from slow solid-state Mg2+diffusion in the intercalation cathode. Here the authors show magnesium/iodine chemistry in which the liquid–solid two-phase reaction leads to increased rate capabilities by overcoming the sluggish kinetics.Huajun TianTao GaoXiaogang LiXiwen WangChao LuoXiulin FanChongyin YangLiumin SuoZhaohui MaWeiqiang HanChunsheng WangNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Huajun Tian
Tao Gao
Xiaogang Li
Xiwen Wang
Chao Luo
Xiulin Fan
Chongyin Yang
Liumin Suo
Zhaohui Ma
Weiqiang Han
Chunsheng Wang
High power rechargeable magnesium/iodine battery chemistry
description Rechargeable magnesium batteries suffer from slow solid-state Mg2+diffusion in the intercalation cathode. Here the authors show magnesium/iodine chemistry in which the liquid–solid two-phase reaction leads to increased rate capabilities by overcoming the sluggish kinetics.
format article
author Huajun Tian
Tao Gao
Xiaogang Li
Xiwen Wang
Chao Luo
Xiulin Fan
Chongyin Yang
Liumin Suo
Zhaohui Ma
Weiqiang Han
Chunsheng Wang
author_facet Huajun Tian
Tao Gao
Xiaogang Li
Xiwen Wang
Chao Luo
Xiulin Fan
Chongyin Yang
Liumin Suo
Zhaohui Ma
Weiqiang Han
Chunsheng Wang
author_sort Huajun Tian
title High power rechargeable magnesium/iodine battery chemistry
title_short High power rechargeable magnesium/iodine battery chemistry
title_full High power rechargeable magnesium/iodine battery chemistry
title_fullStr High power rechargeable magnesium/iodine battery chemistry
title_full_unstemmed High power rechargeable magnesium/iodine battery chemistry
title_sort high power rechargeable magnesium/iodine battery chemistry
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/b822196302f84a7ebf087bc27b298160
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AT taogao highpowerrechargeablemagnesiumiodinebatterychemistry
AT xiaogangli highpowerrechargeablemagnesiumiodinebatterychemistry
AT xiwenwang highpowerrechargeablemagnesiumiodinebatterychemistry
AT chaoluo highpowerrechargeablemagnesiumiodinebatterychemistry
AT xiulinfan highpowerrechargeablemagnesiumiodinebatterychemistry
AT chongyinyang highpowerrechargeablemagnesiumiodinebatterychemistry
AT liuminsuo highpowerrechargeablemagnesiumiodinebatterychemistry
AT zhaohuima highpowerrechargeablemagnesiumiodinebatterychemistry
AT weiqianghan highpowerrechargeablemagnesiumiodinebatterychemistry
AT chunshengwang highpowerrechargeablemagnesiumiodinebatterychemistry
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