4.8 Article

Efficient Activation of High-Loading Sulfur by Small CNTs Confined Inside a Large CNT for High-Capacity and High-Rate Lithium-Sulfur Batteries

期刊

NANO LETTERS
卷 16, 期 1, 页码 440-447

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.5b04105

关键词

carbon nanotube; sulfur; tube-in-tube; lithium-sulfur battery

资金

  1. Program for Professor of Special Appointment in Shanghai (Eastern Scholar)
  2. National Natural Science Foundation of China [51271105]
  3. Shanghai Science & Technology Committee [15520720600]
  4. [IRT13078]

向作者/读者索取更多资源

Sulfur with a high specific capacity of 1673 mAh g(-1) is yet to be used as commercial cathode for lithium batteries because of its low utilization rate and poor cycle stability. In this work, a tube-in-tube carbon structure is demonstrated to relieve the critical problems with sulfur cathode: poor electrical conductivity, dissolution of lithium polysulfides, and large volume change during cycling. A number of small carbon nanotubes (similar to 10 nm in diameter) and a high loading amount of 85.2 wt % sulfur are both filled completely inside a large amorphous carbon nanotube (similar to 100 nm in diameter). Owing to the presence of these electrically conductive, highly flexible and structurally robust small CNTs and a large CNT overlayer, sulfur material exhibits a high utilization rate and delivers a large discharge capacity of 1633 mAh g(-1) (based on the mass of sulfur) at 0.1 C, approaching its theoretical capacity (1673 mAh g(-1)). The obtained S-CNTs@CNT electrode demonstrates superior high-rate cycling performances. Large discharge capacities of similar to 1146, 1121, and 954 mAh g(-1) are observed after 150 cycles at large current rates of 1, 2, and S C, respectively.

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