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Effects of surrounding confinements of Si nanoparticles on Si-based anode performance for lithium ion batteries

机译:硅纳米粒子的周围限制对锂离子电池硅基负极性能的影响

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摘要

We report herein the effects of various surrounding confinements of Si nanoparticles on the electrochemical performance of Si nanoparticles based anode for lithium ion batteries (LIBs). Three different types of surrounding confinements are incorporated onto or around the surface of Si nanoparticles: Si nanoparticles-embedded carbon nanofibers (Si@CNF) via electrospinning, carbon nitride encapsulated Si nanoparticles with core/shell structure (Si@CND), and binder enriched Si nanoparticles-based anode (Si@RBD). Morphology and microstructure of the samples are characterized using X-ray diffractometry, scanning electron microscopy, transmission electron microscopy, and the results were discussed in relation to the electrochemical performances. It is found that Si@CNF which has conducting hard surrounding confinements and Si@RBD exhibited high reversible specific capacity of 620mA hg~(-1) and 1200mA hg~(-1), up to 30th cycle, respectively. Meanwhile, Si@CND that has mechanically hard but poor electrical conductivity exhibits low specific capacity compared with the other two samples.
机译:我们在此报告了硅纳米颗粒的各种周围限制对基于锂离子电池(LIBs)的基于硅纳米颗粒的阳极的电化学性能的影响。三种不同类型的周围限制条件被结合到Si纳米颗粒的表面上或周围:通过电纺丝嵌入Si纳米颗粒的碳纳米纤维(Si @ CNF),氮化碳封装的具有核/壳结构的Si纳米颗粒(Si @ CND)和富含粘合剂的粘合剂硅纳米颗粒基阳极(Si @ RBD)。利用X射线衍射,扫描电子显微镜,透射电子显微镜对样品的形貌和微观结构进行表征,并对结果与电化学性能进行了讨论。结果发现,具有严格的环境限制的Si @ CNF和Si @ RBD在第30个循环中分别表现出620mA hg〜(-1)和1200mA hg〜(-1)的高可逆比电容。同时,与其他两个样品相比,机械强度高但导电性差的Si @ CND的比电容低。

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