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Generalizable Synthesis of Metal‐Sulfides/Carbon Hybrids with Multiscale, Hierarchically Ordered Structures as Advanced Electrodes for Lithium Storage

with a multiscale, multidimensional, and hierarchically ordered architecture have been designed and synthesized by a general and facile method. As a result of this novel and unique architecture design, the obtained hybrid electrodes show attractive reversibility and cycle stability as well as excell... Full description

Journal Title: Advanced Materials January 2016, Vol.28(1), pp.174-180
Main Author: Wu, Chao
Other Authors: Maier, Joachim , Yu, Yan
Format: Electronic Article Electronic Article
Language:
Subjects:
ID: ISSN: 0935-9648 ; E-ISSN: 1521-4095 ; DOI: 10.1002/adma.201503969
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recordid: wj10.1002/adma.201503969
title: Generalizable Synthesis of Metal‐Sulfides/Carbon Hybrids with Multiscale, Hierarchically Ordered Structures as Advanced Electrodes for Lithium Storage
format: Article
creator:
  • Wu, Chao
  • Maier, Joachim
  • Yu, Yan
subjects:
  • Hierarchic Structures
  • Lithium Storage
  • Multidimensional Structures
  • Multiscale Structures
  • Transition‐Metal Sulfides
ispartof: Advanced Materials, January 2016, Vol.28(1), pp.174-180
description: with a multiscale, multidimensional, and hierarchically ordered architecture have been designed and synthesized by a general and facile method. As a result of this novel and unique architecture design, the obtained hybrid electrodes show attractive reversibility and cycle stability as well as excellent rate capability.
language:
source:
identifier: ISSN: 0935-9648 ; E-ISSN: 1521-4095 ; DOI: 10.1002/adma.201503969
fulltext: fulltext
issn:
  • 0935-9648
  • 09359648
  • 1521-4095
  • 15214095
url: Link


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descriptionwith a multiscale, multidimensional, and hierarchically ordered architecture have been designed and synthesized by a general and facile method. As a result of this novel and unique architecture design, the obtained hybrid electrodes show attractive reversibility and cycle stability as well as excellent rate capability.
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abstractwith a multiscale, multidimensional, and hierarchically ordered architecture have been designed and synthesized by a general and facile method. As a result of this novel and unique architecture design, the obtained hybrid electrodes show attractive reversibility and cycle stability as well as excellent rate capability.
doi10.1002/adma.201503969
pages174-180
date2016-01