A Ti3C2Tx-Based Composite as Separator Coating for Stable Li-S Batteries

Author:

Yi Ruowei,Zhao Yinchao,Liu Chenguang,Sun Yi,Zhao ChunORCID,Li Yinqing,Yang Li,Zhao CezhouORCID

Abstract

The nitrogen-doped MXene carbon nanosheet-nickel (N-M@CNi) powder was successfully prepared by a combined process of electrostatic attraction and annealing strategy, and then applied as the separator coating in lithium–sulfur batteries. The morphology and structure of the N-M@CNi were characterized by transmission electron microscopy (TEM), scanning electron microscopy (SEM), Raman spectrum, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and nitrogen adsorption–desorption method. The strong LiPS adsorption ability and high conductivity are associated with the N-doped carbon nanosheet-Ni modified surface. The modified separator offers the cathode of Li–S cell with greater sulfur utilization, better high-rate adaptability, and more stable cycling performance compared with the pristine separator. At 0.2 C the cell with N-M@CNi separator delivers an initial capacity of 1309 mAh g−1. More importantly, the N-M@CNi separator is able to handle a cathode with 3.18 mg cm−2 sulfur loading, delivering a capacity decay rate of 0.043% with a high capacity retention of 95.8%. Therefore, this work may provide a feasible approach to separator modification materials towards improved Li-S cells with improved stability.

Funder

National Natural Science Foundation of China

Suzhou Industrial Park Initiative Platform Development for Suzhou Municipal Key Lab for New Energy Technology

Key Program Special Fund in XJTLU

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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