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碳包覆二氧化硅复合材料作为锂离子电池有前景的负极材料

Carbon-Coated SiO Composites as Promising Anode Material for Li-Ion Batteries.

作者信息

Buga Mihaela-Ramona, Spinu-Zaulet Adnana Alina, Ungureanu Cosmin Giorgian, Mitran Raul-Augustin, Vasile Eugeniu, Florea Mihaela, Neatu Florentina

机构信息

National Research and Development Institute for Cryogenic and Isotopic Technologies Rm. Valcea, 4 Uzinei, 240050 Ramnicu Valcea, Romania.

Faculty of Power Engineering, Politehnica University of Bucharest, 060042 Bucharest, Romania.

出版信息

Molecules. 2021 Jul 27;26(15):4531. doi: 10.3390/molecules26154531.

Abstract

Porous silica-based materials are a promising alternative to graphite anodes for Li-ion batteries due to their high theoretical capacity, low discharge potential similar to pure silicon, superior cycling stability compared to silicon, abundance, and environmental friendliness. However, several challenges prevent the practical application of silica anodes, such as low coulombic efficiency and irreversible capacity losses during cycling. The main strategy to tackle the challenges of silica as an anode material has been developed to prepare carbon-coated SiO composites by carbonization in argon atmosphere. A facile and eco-friendly method of preparing carbon-coated SiO composites using sucrose is reported herein. The carbon-coated SiO composites were characterized using X-ray diffraction, X-ray photoelectron spectroscopy, thermogravimetry, transmission and scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy, cyclic voltammetry, and charge-discharge cycling. A C/SiO-0.085 M calendered electrode displays the best cycling stability, capacity of 714.3 mAh·g, and coulombic efficiency as well as the lowest charge transfer resistance over 200 cycles without electrode degradation. The electrochemical performance improvement could be attributed to the positive effect of the carbon thin layer that can effectively diminish interfacial impedance.

摘要

基于多孔二氧化硅的材料因其高理论容量、与纯硅相似的低放电电位、比硅更好的循环稳定性、丰富性和环境友好性,是锂离子电池石墨负极的一种有前途的替代品。然而,一些挑战阻碍了二氧化硅负极的实际应用,例如低库仑效率和循环过程中的不可逆容量损失。应对二氧化硅作为负极材料挑战的主要策略是在氩气气氛中通过碳化制备碳包覆的SiO复合材料。本文报道了一种使用蔗糖制备碳包覆SiO复合材料的简便且环保的方法。使用X射线衍射、X射线光电子能谱、热重分析、透射和扫描电子显微镜以及能量色散X射线光谱、循环伏安法和充放电循环对碳包覆的SiO复合材料进行了表征。一个C/SiO-0.085 M压延电极显示出最佳的循环稳定性、714.3 mAh·g的容量和库仑效率,以及在200次循环中最低的电荷转移电阻且无电极降解。电化学性能的改善可归因于碳薄层的积极作用,它可以有效降低界面阻抗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc54/8348466/ed3da6816322/molecules-26-04531-sch001.jpg

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