4.8 Article

Cobalt-Doping of Molybdenum Disulfide for Enhanced Catalytic Polysulfide Conversion in Lithium-Sulfur Batteries

期刊

ACS NANO
卷 15, 期 4, 页码 7491-7499

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.1c00896

关键词

lithium-sulfur batteries; MoS2; doping; sulfur vacancy; polysulfides transformation

资金

  1. National Natural Science Foundation of China [51772164, 52022041, 51932005]
  2. National Key Research and Development Program of China [2018YFE0124500]
  3. Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program [2017BT01N111]
  4. Guangdong Special Support Program [2017TQ04C664]
  5. Shenzhen Basic Research Project [JCYJ20180508152037520]
  6. Shenzhen Graphene Manufacturing Innovation Center [201901161513]

向作者/读者索取更多资源

This study proposed Co-doped MoS2 as a metal sulfide catalyst for lithium-sulfur batteries, successfully accelerating the catalytic conversion of sulfur compounds and improving battery performance, indicating that doping is an effective way to optimize metal sulfide catalysts.
Metal sulfides, such as MoS2, are widely investigated in lithium-sulfur (Li-S) batteries to suppress the shuttling of lithium polysulfides (LiPSs) due to their chemical adsorption ability and catalytic activity. However, their relatively low conductivity and activity limit the LiPS conversion kinetics. Herein, the Co-doped MoS2 is proposed to accelerate the catalytic conversion of LiPS as the Co doping can promote the transition from semiconducting 2H phase to metallic 1T phase and introduce the sulfur vacancies in MoS2. A one-step hydrothermal process is used to prepare such a Co-doped MoS2 with more 1T phase and rich sulfur vacancies, which enhances the electron transfer and catalytic activity, thus effectively improving the LiPS adsorption and conversion kinetics. The cathode using the three-dimensional graphene monolith loaded with Co-doped MoS2 catalyst as the sulfur host shows a high rate capability and long cycling stability. A high capacity of 941 mAh g(-1) at 2 C and a low capacity fading of 0.029% per cycle at 1 C over 1000 cycles are achieved, suggesting the effectively suppressed LiPS shuttling and improved sulfur utilization. Good cyclic stability is also maintained under a high sulfur loading indicating the doping is an effective way to optimize the metal sulfide catalysts in Li-S batteries.

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