Rational Design of 3D Honeycomb-Like SnS2 Quantum Dots/rGO Composites as High-Performance Anode Materials for Lithium/Sodium-Ion Batteries

被引:0
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作者
Yingge Zhang
Yan Guo
Yange Wang
Tao Peng
Yang Lu
Rongjie Luo
Yangbo Wang
Xianming Liu
Jang-Kyo Kim
Yongsong Luo
机构
[1] Xinyang Normal University,School of Physics and Electronic Engineering
[2] Xinyang Normal University,Key Laboratory of Microelectronics and Energy of Henan Province
[3] Luoyang Normal University,College of Chemistry and Chemical Engineering
[4] Hong Kong University of Science and Technology,Department of Mechanical and Aerospace Engineering
来源
Nanoscale Research Letters | 2018年 / 13卷
关键词
SnS; quantum dots; Spray drying; rGO; Lithium-ion batteries; Sodium-ion batteries;
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摘要
Structure pulverization and poor electrical conductivity of metal dichalcogenides result in serious capacity decay both in lithium-ion batteries (LIBs) and sodium-ion batteries (SIBs). To resolve the above problems, a combination of metal dichalcogenides with conductive scaffolds as high-performance electrode materials has aroused tremendous interest recently. Herein, we synthesize a 3D honeycomb-like rGO anchored with SnS2 quantum dots (3D SnS2 QDs/rGO) composite via spray-drying and sulfidation. The unique 3D-ordered honeycomb-like structure can confine the volume change of SnS2 QDs in the lithiation/delithiation and sodiation/desodiation processes, provide enough space for electrolyte reservoirs, promote the conductivity of the SnS2 QDs, and improve the electron transfer. As a result, the 3D SnS2 QDs/rGO composite electrode delivers a high capacity and long cycling stability (862 mAh/g for LIB at 0.1 A/g after 200 cycles, 233 mAh/g for SIB at 0.5 A/g after 200 cycles). This study provides a feasible synthesis route for preparing 3D-ordered porous networks in varied materials for the development of high-performance LIBs and SIBs in future.
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