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Elucidating the Synergistic Behavior of Orientation-Controlled SnS Nanoplates and Carbon Layers for High- Performance Lithium- and Sodium-Ion Batteries

机译:阐明取向控制的SnS纳米板和碳层在高性能锂离子和钠离子电池中的协同行为

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摘要

As the demand for higher energy density in portable electronics and electric vehicles has increased, novel electrode materials with high reversible capacity have received significant research attention for breakthrough into next-generation lithium-ion batteries (LIBs) and sodium-ion batteries (SIBs). Tin monosulfide is a particularly promising anode material for both LIBs and SIBs due to its exceptional electrochemical properties, thus several strategies based on nanoengineered SnS/carbon composites (NSCs) have been introduced to improve the electrical and ionic conductivity and to reduce the volume change that occurs during cycling. However, to fully exploit the outstanding properties of NSCs, the crystallographic orientation of anisotropic SnS should be optimized. Herein, vertically aligned SnS nanoplate arrays (VA-SnS@C) with preferred (111) and (101) orientations covered by carbon layers are fabricated using a facile spin-coating method followed by a simple glucose solution bath. The as-fabricated (111)-oriented VA-SnS@C anode demonstrates better electrochemical performance than does the (040)-oriented planar SnS (PL-SnS@C) anode, illustrating the critical role of the crystallographic orientation in NSCs. The superior electrochemical performance of the VA-SnS@C anode demonstrates that this facile approach harnesses the synergistic effects of orientation-controlled SnS and versatile carbon layers, which is crucial to design high-performance anodes for next-generation LIBs and SIBs.
机译:随着便携式电子产品和电动汽车对更高能量密度的需求增加,具有高可逆容量的新型电极材料在下一代锂离子电池(LIB)和钠离子电池(SIBs)中取得了突破性进展,受到了广泛的研究关注。单硫化锡因其优异的电化学性能而成为锂离子电池和硅电池的阳极材料,因此引入了几种基于纳米工程SnS/碳复合材料(NSCs)的策略来提高电导率和离子电导率,并减少循环过程中发生的体积变化。然而,为了充分利用NSCs的优异性能,应优化各向异性SnS的晶体取向。本文,使用简单的旋涂方法制备垂直排列的SnS纳米板阵列(VA-SnS@C),其优选方向(111)和(101)被碳层覆盖,然后使用简单的葡萄糖溶液浴。制备的(111)取向VA-SnS@C阳极比(040)取向的平面SnS(PL-SnS@C)阳极表现出更好的电化学性能,说明了晶体取向在NSCs中的关键作用。VA-SnS@C阳极卓越的电化学性能表明,这种简单的方法利用了取向控制的SnS和多功能碳层的协同效应,这对于为下一代LIB和SIB设计高性能阳极至关重要。

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