Chen Lei, Li Yanyan, Liu Chao, Guo Feifei, Wu Xiaozhong, Zhou Pengfei, Fang Zhiwen, Zhou Jin
School of Chemistry and Chemical Engineering, Shandong University of Technology Zibo 255000 China
Shandong Zhongshan Photoelectric Materials Co., Ltd. Zibo 255138 China.
RSC Adv. 2023 May 15;13(22):14797-14807. doi: 10.1039/d3ra01695a.
Fluorinated hard carbon materials have been considered to be a good candidate of cathode materials of Li/CF batteries. However, the effect of the precursor structure of the hard carbon on the structure and electrochemical performance of fluorinated carbon cathode materials has yet to be fully studied. In this paper, a series of fluorinated hard carbon (FHC) materials are prepared by gas phase fluorination using saccharides with different degrees of polymerization as a carbon source, and their structure and electrochemical properties are studied. The experimental results show that the specific surface area, pore structure, and defect degree of hard carbon (HC) are enhanced as the polymerization degree ( molecular weight) of the starting saccharide increases. At the same time, the F/C ratio increases after fluorination at the same temperature, and the contents of electrochemically inactive -CF and -CF groups also become higher. At the fluorination temperature of 500 °C, the obtained fluorinated glucose pyrolytic carbon shows good electrochemical properties, with a specific capacity of 876 mA h g, an energy density of 1872 W kg, and a power density of 3740 W kg. This study provides valuable insights and references for selecting suitable hard carbon precursors to develop high-performance fluorinated carbon cathode materials.
氟化硬碳材料被认为是锂/氟化碳电池阴极材料的良好候选者。然而,硬碳前驱体结构对氟化碳阴极材料的结构和电化学性能的影响尚未得到充分研究。本文以不同聚合度的糖类为碳源,通过气相氟化法制备了一系列氟化硬碳(FHC)材料,并对其结构和电化学性能进行了研究。实验结果表明,随着起始糖类聚合度(分子量)的增加,硬碳(HC)的比表面积、孔结构和缺陷度增强。同时,在相同温度下氟化后F/C比增加,电化学惰性的-CF和-CF基团含量也更高。在500℃的氟化温度下,所制备的氟化葡萄糖热解碳表现出良好的电化学性能,比容量为876 mA h g,能量密度为1872 W kg,功率密度为3740 W kg。该研究为选择合适的硬碳前驱体以开发高性能氟化碳阴极材料提供了有价值的见解和参考。