首页> 外文期刊>ACS applied materials & interfaces >Carbon Coated SnS/SnO2 Heterostructures Wrapping on CNFs as an Improved-Performance Anode for Li-Ion Batteries: Lithiation-Induced Structural Optimization upon Cycling
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Carbon Coated SnS/SnO2 Heterostructures Wrapping on CNFs as an Improved-Performance Anode for Li-Ion Batteries: Lithiation-Induced Structural Optimization upon Cycling

机译:CNFs上的碳包覆SnS / SnO2异质结构包裹,作为锂离子电池的一种高性能阳极:循环时锂化诱导的结构优化

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Carbon coated SnS/SnO2 heterostnictures wrapping on carbon nanofibers (C@SnS/SnO2@CNFs) was demonstrated to have excellent performance as an anode material for Li-ion batteries. C@SnS/SnO2@CNFs electrode delivers high reversible capacity of 826.8 mA h g(-1) (500th cycle) at the current density of 1.0 A g(-1). However, an interesting phenomenon of increasing capacity on cycling can be observed. According to the analysis of the evolution of structure and electrochemical property, C@SnS/SnO2@CNFs is demonstrated to experience the progress of conversion from nanowalls containing polycrystals into amorphous nanosheets with high porosity and larger surface upon cycling. The above lithiation-induced structural optimization provides larger effective surface areas and encourages the conversion reactions, which can promote charge transfer and also enhance the reversibility of the conversion reactions of SnS and SnO2 inducing the increasing reversible capacity. The study explains the progress of increasing capacity of C@SnS/SnO2@CNFs and likewise provides a perspective on optimization of the electrochemical performance of electrodes.
机译:事实证明,包裹在碳纳米纤维(C @ SnS / SnO2 @ CNFs)上的碳涂层SnS / SnO2异质结构作为锂离子电池负极材料具有出色的性能。 C @ SnS / SnO2 @ CNFs电极在1.0 A g(-1)的电流密度下可提供826.8 mA h g(-1)的高可逆容量(第500个循环)。但是,可以观察到一个有趣的现象,即循环容量增加。根据结构和电化学性能的演变分析,证明C @ SnS / SnO2 @ CNFs经历了从包含多晶纳米壁到高孔隙度和循环时较大表面的非晶纳米片的转化过程。上述锂化诱导的结构优化提供了更大的有效表面积并促进了转化反应,这可以促进电荷转移并且还增强了SnS和SnO 2转化反应的可逆性,从而诱导了可逆容量的增加。该研究解释了提高C @ SnS / SnO2 @ CNFs容量的进展,并同样为优化电极的电化学性能提供了一个视角。

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