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A monodispersed nano-hexahedral LiFePO.sub.4 with improved power capability by carbon-coatings

To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.06.097 Byline: Jing Li, Qunting Qu, Longfei Zhang, Li Zhang, Honghe Zheng Abstract: acents A monodispersed nano-LiFePO.sub.4 of regular angularity was synthesized via hydrothermal method. acents T... Full description

Journal Title: Journal of Alloys and Compounds Dec 5, 2013, Vol.579, p.377(7)
Main Author: Li, Jing
Other Authors: Qu, Qunting , Zhang, Longfei , Zhang, Li , Zheng, Honghe
Format: Electronic Article Electronic Article
Language: English
Subjects:
Quelle: Cengage Learning, Inc.
ID: ISSN: 0925-8388
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recordid: gale_ofa346070224
title: A monodispersed nano-hexahedral LiFePO.sub.4 with improved power capability by carbon-coatings
format: Article
creator:
  • Li, Jing
  • Qu, Qunting
  • Zhang, Longfei
  • Zhang, Li
  • Zheng, Honghe
subjects:
  • Coatings Industry
  • Coatings
ispartof: Journal of Alloys and Compounds, Dec 5, 2013, Vol.579, p.377(7)
description: To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.06.097 Byline: Jing Li, Qunting Qu, Longfei Zhang, Li Zhang, Honghe Zheng Abstract: acents A monodispersed nano-LiFePO.sub.4 of regular angularity was synthesized via hydrothermal method. acents The nano-sized hexahedral LiFePO.sub.4 was coated with different carbon sources. acents The LiFePO.sub.4 coated with sucrose precursor exhibits the best power rate performance. acents Li ion diffusion property is not considerably affected by the used carbon sources. Article History: Received 3 April 2013; Revised 28 May 2013; Accepted 15 June 2013
language: English
source: Cengage Learning, Inc.
identifier: ISSN: 0925-8388
fulltext: fulltext
issn:
  • 0925-8388
  • 09258388
url: Link


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titleA monodispersed nano-hexahedral LiFePO.sub.4 with improved power capability by carbon-coatings
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descriptionTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.06.097 Byline: Jing Li, Qunting Qu, Longfei Zhang, Li Zhang, Honghe Zheng Abstract: acents A monodispersed nano-LiFePO.sub.4 of regular angularity was synthesized via hydrothermal method. acents The nano-sized hexahedral LiFePO.sub.4 was coated with different carbon sources. acents The LiFePO.sub.4 coated with sucrose precursor exhibits the best power rate performance. acents Li ion diffusion property is not considerably affected by the used carbon sources. Article History: Received 3 April 2013; Revised 28 May 2013; Accepted 15 June 2013
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descriptionTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.06.097 Byline: Jing Li, Qunting Qu, Longfei Zhang, Li Zhang, Honghe Zheng Abstract: acents A monodispersed nano-LiFePO.sub.4 of regular angularity was synthesized via hydrothermal method. acents The nano-sized hexahedral LiFePO.sub.4 was coated with different carbon sources. acents The LiFePO.sub.4 coated with sucrose precursor exhibits the best power rate performance. acents Li ion diffusion property is not considerably affected by the used carbon sources. Article History: Received 3 April 2013; Revised 28 May 2013; Accepted 15 June 2013
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abstractTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.06.097 Byline: Jing Li, Qunting Qu, Longfei Zhang, Li Zhang, Honghe Zheng Abstract: acents A monodispersed nano-LiFePO.sub.4 of regular angularity was synthesized via hydrothermal method. acents The nano-sized hexahedral LiFePO.sub.4 was coated with different carbon sources. acents The LiFePO.sub.4 coated with sucrose precursor exhibits the best power rate performance. acents Li ion diffusion property is not considerably affected by the used carbon sources. Article History: Received 3 April 2013; Revised 28 May 2013; Accepted 15 June 2013
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