4.8 Article

A Universal Strategy To Prepare Sulfur-Containing Polymer Composites with Desired Morphologies for Lithium-Sulfur Batteries

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 26, 页码 22002-22012

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b03611

关键词

lithium batteries; sulfur-containing polymers; morphological control; porous carbon nanobelts; carbon/sulfur composites

资金

  1. National Natural Science Foundation of China [51202150, 51272161, 21703141]
  2. Basic Research Program of Shenzhen [JCYJ20150324141711663, JCYJ20170818101932570]
  3. Program of Introducing Innovative Research Team in Dongguan [2014607109]
  4. foundation of the State Key Laboratory of Solidification Processing in NWPU [SKLSP201110]
  5. Hong Kong Polytechnic University [1-ZVGH]

向作者/读者索取更多资源

Lithium-sulfur (Li-S) batteries are probably the most promising candidates for the next-generation batteries owing to their high energy density. However, Li-S batteries face severe technical problems where the dissolution of intermediate polysulfides is the biggest problem because it leads to the degradation of the cathode and the lithium anode, and finally the fast capacity decay. Compared with the composites of elemental sulfur and other matrices, sulfur-containing polymers (SCPs) have strong chemical bonds to sulfur and therefore show low dissolution of polysulfides. Unfortunately, most SCPs have very low electron conductivity and their morphologies can hardly be controlled, which undoubtedly depress the battery performances of SCPs. To overcome these two weaknesses of SCPs, a new strategy was developed for preparing SCP composites with enhanced conductivity and desired morphologies. With this strategy, macroporous SCP composites were successfully prepared from hierarchical porous carbon. The composites displayed discharge/charge capacities up to 1218/1139, 949/922, and 796/785 mA h g(-1) at the current rates of 5, 10, and 15 C, respectively. Considering the universality of this strategy and the numerous morphologies of carbon materials, this strategy opens many opportunities for making carbon/SCP composites with novel morphologies.

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