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Carbon-Assisted Technique to Modify the Surface of Recycled Silicon/Silicon Carbide Composite for Lithium-Ion Batteries

机译:用于锂离子电池的再生硅/碳化硅复合材料表面改性的碳辅助技术

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摘要

A green source of microsized silicon/silicon carbide (Si/SiC) composite represent the wastes of solar cell industries that are created during ingot cutting process; the composite can be used as a Si-based anode for lithium ion batteries. In contrast to Si nanoparticles with a particular morphology design, the microsized Si/SiC composite from the wastes show severe capacity degradation due to the formation of a solid electrolyte interface (SEI) that affects the conductivity and stability of the electrode. In this study, an external treatment of the electrode (a carbon-assisted technique (CAT)) was adopted to modify the surface of the electrode and compared with an internal treatment of electrode between particles (namely a pitch-wrapping technique (PWT)). The external and internal carbon treatments of the electrodes were analyzed individually by cyclic voltammetry and ac impedance spectroscopy. The electrochemical behavior reveals that the characteristic peak of SEI formation and the resistance of SEI of CAT was improved with more efficiency than PWT. Furthermore, based on the cycling performance and irreversibility, the charge retention of the microsized composite could be boosted. Therefore, CAT could replace PWT in the case of microsized Si particles. Conclusively, a method was developed to stabilize SEI formation, which could not only enhance the cyclability but also provide an alternative approach to solve the issue related to SEI formation of a Si-based anode.
机译:微型硅/碳化硅(Si/SiC)复合材料的绿色来源代表了在铸锭切割过程中产生的太阳能电池工业废物;该复合材料可用作锂离子电池的硅基阳极。与具有特定形貌设计的硅纳米颗粒相比,来自废物的微粒Si/SiC复合材料由于固体电解质界面(SEI)的形成而显示出严重的容量退化,从而影响了电极的电导率和稳定性。在这项研究中,采用电极的外部处理(碳辅助技术(CAT))来改变电极的表面,并与颗粒之间的电极内部处理(即沥青包裹技术(PWT))进行了比较。采用循环伏安法和交流阻抗谱分别分析了电极的外部和内部碳处理。电化学行为表明,与PWT相比,CAT的SEI形成特征峰和SEI电阻均得到改善。此外,基于循环性能和不可逆性,可以提高微尺寸复合材料的电荷保持性。因此,在微小硅颗粒的情况下,CAT可以取代PWT。最终,开发了一种稳定SEI形成的方法,该方法不仅可以增强可循环性,还可以为解决Si基阳极SEI形成相关问题提供替代方法。

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