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用于高性能锂原电池的溶剂热剥离氟石墨烯

Solvothermally exfoliated fluorographene for high-performance lithium primary batteries.

作者信息

Sun Chuanbin, Feng Yiyu, Li Yu, Qin Chengqun, Zhang Qingqing, Feng Wei

机构信息

School of Materials Science and Engineering, Tianjin Key Laboratory of Composite and Functional Materials, Tianjin University, Tianjin 300072, China.

出版信息

Nanoscale. 2014 Mar 7;6(5):2634-41. doi: 10.1039/c3nr04609e. Epub 2013 Dec 11.

Abstract

High-quality fluorographene (FG) was prepared by solvothermal exfoliation of fluorinated graphite (F-graphite) through intercalation of acetonitrile and chloroform with low boiling points. High-yield production of FG was demonstrated by wrinkled few-layered structures with disordered edges and poor regularity along the stacking direction. X-ray photo electron spectroscopy (XPS) spectra indicated that the intercalation of chloroform led to the partial transformation from covalent C-F bonds to semi-ionic C-F bonds. A lithium primary battery (Li-battery) using a FG cathode exhibited a remarkable discharge rate performance because of good Li(+) diffusion and charge mobility through nanosheets. FG nanosheets exfoliated using chloroform showed a high specific capacity of 520 mA h g(-1) and a voltage platform of 2.18 V at a current density of 1 C, accompanied by a maximum power density of 4038 W kg(-1) at 3 C, which is almost four times higher than that of F-graphite. The results indicate that the solvothermal exfoliation using a low-boiling-point solvent is a facile, efficient and high-yield approach to prepare high-purity FG nanosheets for high-performance Li-batteries.

摘要

通过低沸点的乙腈和氯仿插层对氟化石墨(F-石墨)进行溶剂热剥离,制备出了高质量的氟石墨烯(FG)。FG的高产率制备表现为具有无序边缘和沿堆叠方向规整性较差的褶皱少层结构。X射线光电子能谱(XPS)表明,氯仿的插层导致了从共价C-F键到半离子C-F键的部分转变。使用FG阴极的锂原电池(锂电池)由于通过纳米片具有良好的Li(+)扩散和电荷迁移率,因而展现出卓越的放电速率性能。用氯仿剥离的FG纳米片在1 C的电流密度下表现出520 mA h g(-1)的高比容量和2.18 V的电压平台,在3 C时最大功率密度为4038 W kg(-1),几乎是F-石墨的四倍。结果表明,使用低沸点溶剂进行溶剂热剥离是一种简便、高效且高产率的方法,可用于制备用于高性能锂电池的高纯度FG纳米片。

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