4.8 Article

Polyvinyl Alcohol-derived carbon nanofibers/carbon nanotubes/sulfur electrode with honeycomb-like hierarchical porous structure for the stable-capacity lithium/sulfur batteries

Journal

JOURNAL OF POWER SOURCES
Volume 346, Issue -, Pages 1-12

Publisher

ELSEVIER
DOI: 10.1016/j.jpowsour.2017.02.022

Keywords

Lithium-sulfur battery; Honeycomb-like hierarchical porous; Carbon nanofibers; Porous carbon nanofibers (PCNFs)-carbon nanotubes (CNTs)-sulfur(S)composite electrode; Super-stable capacity

Funding

  1. National Natural Science Foundation of China [51173131, 51678411, 51673148]
  2. Science and Technology Plans of Tianjin [15PTSYJC00230, 16JCTPJC45600]
  3. Fund Project for Transformation of Scientific and Technological Achievements from Jiangsu Province [BA2015182]

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The honeycomb-like hierarchical porous carbon nanofibers (PCNFs)-carbon nanotubes (CNTs)-sulfur(S) composite electrode is successfully desgined and prepared through ball-milling and heating method, in which the PCNFs are carbonized from fibers in the membrane composed of Polyvinyl Alcohol and Polytetrafluoroethylene by electro-blown spinning technology. The prepared PCNFs-CNTs-S composite are regarded as cathode for lithium -sulfur battery. The tailored porous structure and CNTs in the composite facilitate construction of a high electrical conductive pathway and store more S/polysulfides, and the dissoluble loss of intermediate S species in electrolyte can also be restrained because of acidized PVAbased porous carbon nanofibers. Meanwhile, the porous strcucture and CNTs can effectively alleviate volume changes in battery cycling process. Moreover, the presence of LiNO3 in electrolyte helps the electrochemical oxidation of Li2S and LiNO3-derived surface film effectively suppresses the migration of soluble polysulfide to the Li anode surface. Therefore, the obtained PCNFs-CNTs-S cathode exhibits excellent performance in Li-S battery with a high initial discharge capacity as high as 1302.9 mAh g(-1) and super stable capacity retention with 809.1 mAh g(-1), after 300 cycles at the current density of 837.5 mA g(-1) (0.5 C). And the rate capability of PCNFs-CNTs-S electrode is much better than those of CNTs-S and PCNFs-S electrodes. (C) 2017 Elsevier B.V. All rights reserved.

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