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Research Article

An integrated cathode with bi-functional catalytic effect for excellent-performance lithium-sulfur batteries

Mengmeng Zhen1,2,Xintao Zuo1Juan Wang1Cheng Wang1 ( )
Tianjin Key Laboratory of Advanced Functional Porous Materials and Center for Electron Microscopy,Institute for New Energy Materials & Low-Carbon Technologies, School of Materials Science and Engineering, Tianjin University of Technology,Tianjin,300071,China;
Tianjin Key Laboratory of Clean Energy and Pollution Control,School of Energy and Environmental Engineering, Hebei University of Technology,Tianjin,300401,China;

Present address: Tianjin Key Laboratory of Clean Energy and Pollution Control, School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, China

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Abstract

The high energy density of lithium-sulfur batteries (LSBs) is mainly based on the complex redox reactions and phase conversions. The sluggish redox kinetics and the large accumulation of soluble polysulfides in the electrolyte leads to low sulfur utilization and serious shuttle effect. Herein, an integrated sulfur cathode is constructed through a facile and large-scale method. It is composed of sulfur-N, S doped bamboo like CNTs@Co3S4 (NSC@Co3S4) composites on polypropylene separator. The immobilized polysulfides on the NSC@Co3S4 surface are further reduced/oxidized during the discharge/charge process via the efficient bi-functional catalytic effect of NSC@Co3S4, resulting in the rapid conversion of LiPSs. Consequently, the integrated sulfur cathode delivers a high initial reversible capacity of 1, 473.6 mAh·g-1 at 0.2 C and a high specific capacity of 979 mAh·g-1 at 1 C after 500 cycles as well as excellent cycling stability for 1, 000 cycles with a high specific capacity of 362.5 mAh·g-1 at 5 C, which are superior to reported similar host materials.

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Nano Research
Pages 1017-1024

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Cite this article:
Zhen M, Zuo X, Wang J, et al. An integrated cathode with bi-functional catalytic effect for excellent-performance lithium-sulfur batteries. Nano Research, 2019, 12(5): 1017-1024. https://doi.org/10.1007/s12274-019-2334-7
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Received: 11 December 2018
Revised: 20 January 2019
Accepted: 10 February 2019
Published: 11 March 2019
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2019