4.8 Article

Scalable synthesis of self-standing sulfur-doped flexible graphene films as recyclable anode materials for low-cost sodium-ion batteries

Journal

CARBON
Volume 107, Issue -, Pages 67-73

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2016.05.052

Keywords

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Funding

  1. Chinese Academy of Sciences Innovative and Interdisciplinary Team Award
  2. Chinese Academy of Sciences Changjiang Scholars Program [T2011170]
  3. Key Projects in Nature Science Foundation of Jiangsu Province [BK2011030]
  4. Major Project of Educational Commission of Jiangsu Province of China [13KJA430004]
  5. Priority Academic Program Development of Jiangsu Higher Education Institutions
  6. National Nature Science Foundation of China [21576135]
  7. Program for Jiangsu Specially-Appointed Professors
  8. Youth Fund in Jiangsu Province [BK20150945]

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The commercialization of anodes for sodium ion batteries (SIBs) requires multitude approaches such as the practicality of the synthesis process, battery performance and the recycling option which most studies overlooked. Herein, we showed the scalable synthesis of self-standing sulfur-doped flexible graphene films as the anode materials for SIBs, demonstrating up to 377 mA h g(-1) capacity at 100 mA g(-1) current density as well as an excellent rate capability and a moderate decay rate of 0.106% per cycle during long cycling test. The work also shows that sulfur doping creates additional redox sites for reaction with Na+ and induces larger interspacing layers, leading to an enhanced capacity compared to the non-doped graphene. The self-standing nature of the films also eliminates the need for other additional anode components, such as conductive carbon or binder, and more importantly, allows their recovery and subsequent reuse in new applications. (C) 2016 Elsevier Ltd. All rights reserved.

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