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新型核壳结构硅碳复合负极材料的制备及电化学性能(英文)
Preparation and electrochemical properties of novel silicon-carbon composite anode materials with a core-shell structure
【摘要】 通过对氧化硅预处理得到多组分硅pSi(Si、SiO、SiO2),再利用化学气相沉积法(CVD)设计了具有核壳结构的pSi与碳纳米纤维(CNF)的复合材料(pSi-CNF)。多组分硅中Si、SiO提供电化学可逆容量,SiO2可以抑制硅的体积膨胀;碳纳米纤维包覆形成的壳层结构可以有效提高复合材料的导电性,同时进一步抑制硅的体积膨胀保持核壳结构的完整。通过SEM、TEM、EDS、XRD、Raman和XPS对复合物的微观结构进行分析。结果表明:pSi-CNF的粒径为5~20μm,碳纳米纤维的直径为5~40 nm, pSi-CNF复合材料中含有Si、SiO和SiO2多种组分硅,有明显特征峰;碳纳米纤维均匀包覆于硅表面,形成核壳结构。电化学性能测试表明,在0.2 A·g-1的电流密度下,经100次循环后其可逆容量为1 411 mAh·g-1,容量保持率为74%,具有良好的循环稳定性和较高的可逆容量;在1 A·g-1的电流密度下,经300次循环后其可逆容量为735 mAh·g-1,容量保持率为86%,且具有良好的倍率性能。
【Abstract】 Multi-component porous Si-SiOx(pSi) consisting of Si, SiO and SiO2 was formed by the pretreatment of SiO at 950℃ for 3 h in an inert atmosphere(He) using a disproportionation reaction. Hybrids of pSi and carbon nanofibers(pSi-CNFs) with a core-shell structure were prepared by catalytic chemical vapor deposition(CVD) using Fe-Ni species as the catalyst and a mixture of CO/H2/C2H4(volumetric ratio 3∶1∶1) as the reactant for 0.5, 1 and 2 h, and were characterized by SEM, TEM, EDS, XRD, Raman spectroscopy and XPS. Results indicate that the pSi-CNF particle sizes are 5-20 μm with the diameters of the CNFs being 5-40 nm.The CNFs are uniformly coated on the surface of the pSi to form a core-shell structure. Electrochemical performance testing shows that the reversible capacity of the pSi-CNF(0.5 h) remains at 1 411 mAh·g-1 and the capacity retention is 74% after 100 cycles at a current density of 0.2 A·g-1. The reversible capacity remains at 735 mAh·g-1 at a current density of 1 Ag-1 after 300 cycles with a capacity retention of 86%. In the pSi, Si and SiO provide the electrochemical reversible capacity. The core-shell structure with the CNF coating effectively improves the conductivity of the composites, and also inhibits the volume expansion of silicon to maintain the integrity of the core shell structure.
【Key words】 Silicon carbon composite; Anode material; Chemical vapor deposition; Carbon nanofiber;
- 【文献出处】 新型炭材料 ,New Carbon Materials , 编辑部邮箱 ,2021年02期
- 【分类号】TM912;TB332
- 【被引频次】2
- 【下载频次】310