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

机译:3D蜂窝状SNS2量子点/ RGO复合材料的合理设计作为锂/钠离子电池的高性能阳极材料

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摘要

Abstract 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.
机译:摘要结构粉碎和金属二甲甲基的差导电性差异导致锂离子电池(LIBS)和钠离子电池(SIBS)中的严重容量衰减。为了解决上述问题,通常具有导电支架作为高性能电极材料的金属二甲基甲基化物的组合最近引起了巨大的利益。在此,我们通过喷雾干燥和硫化合成锚定的3D蜂窝状的RGO(3D SNS2 QDS / RGO)复合材料。独特的3D订购蜂窝状的结构可以限制SNS2 QDS中的SNS2 QD的体积变化,并为电解质储存器提供足够的空间,促进SNS2 QD的导电性,并改善电子转移。结果,3D SNS2 QDS / RGO复合电极在200次循环后,在200次循环后,3D SNS2 QDS / RGO复合电极提供高容量和长循环稳定性(对于0.1A / g,在0.1A / g时为862mAh / g,在0.5 a / g的情况下为0.5 a / g )。本研究提供了一种可行的合成途径,用于在不同材料中制备3D订购的多孔网络,以便在将来开发高性能libs和sibs。

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