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首页> 外文期刊>ACS applied materials & interfaces >A Revival of Waste: Atmospheric Pressure Nitrogen Plasma Jet Enhanced Jumbo Silicon/Silicon Carbide Composite in Lithium Ion Batteries
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A Revival of Waste: Atmospheric Pressure Nitrogen Plasma Jet Enhanced Jumbo Silicon/Silicon Carbide Composite in Lithium Ion Batteries

机译:废物的复兴:锂离子电池中的常压氮等离子体喷射增强的巨型硅/碳化硅复合材料

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摘要

In this study, a jumbo silicon/silicon carbide (Si/SiC) composite (JSC), a novel anode material source, was extracted from solar power industry cutting waste and used as a material for lithium-ion batteries (LIBs), instead of manufacturing the nanolized-Si. Unlike previous methods used for preventing volume expansion and solid electrolyte interphase (SEI), the approach proposed here simply entails applying surface modification to JSC-based electrodes by using nitrogen-atmospheric pressure plasma jet (N-APPJ) treatment process. Surface organic bonds were rearranged and N-doped compounds were formed on the electrodes through applying different plasma treatment durations, and the qualitative examinations of before/after plasma treatment. were identified by X-ray photoelectron spectroscopy (XPS) and electron probe microanalyzer (EPMA). The surface modification resulted in the enhancement of electrochemical performance with stable capacity retention and high Coulombic efficiency. In addition, depth profile and scanning electron microscope (SEM) images were executed to determine the existence of Li-N matrix and how the nitrogen compounds change the surface conditions of the electrodes. The N-APPJ-induced rapid surface modification is a major breakthrough for processing recycled waste that can serve as anode materials for next-generation high-performance LIBs.
机译:在这项研究中,从太阳能行业中提取了巨大的硅/碳化硅(Si / SiC)复合材料(JSC),将其作为一种新型的阳极材料来源,将其作为废物处理,并用作锂离子电池(LIB)的材料,制造纳米化的硅。与先前用于防止体积膨胀和固体电解质中间相(SEI)的方法不同,此处提出的方法仅需要通过使用氮气-大气压等离子体射流(N-APPJ)处理工艺对基于JSC的电极进行表面改性。通过施加不同的等离子体处理时间,以及等离子体处理之前/之后的定性检查,重新排列了表面有机键,并在电极上形成了N掺杂的化合物。通过X射线光电子能谱(XPS)和电子探针微分析仪(EPMA)鉴定。表面改性导致电化学性能增强,具有稳定的容量保持率和高库仑效率。另外,执行深度分布图和扫描电子显微镜(SEM)图像以确定Li-N基质的存在以及氮化合物如何改变电极的表面条件。 N-APPJ诱导的快速表面改性是处理可作为下一代高性能LIB阳极材料的回收废物的重大突破。

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