Lithium bis(trifluoromethanesulfonyl)imide assisted dual-functional separator coating materials based on covalent organic frameworks for high-performance lithium-selenium sulfide batteries

被引:52
|
作者
Yang, Yan [1 ]
Hong, Xu-Jia [1 ]
Song, Chun-Lei [1 ]
Li, Guo-Hui [1 ]
Zheng, Yi-Xin [1 ]
Zhou, Dan-Dan [1 ]
Zhang, Min [2 ]
Cai, Yue-Peng [1 ]
Wang, Hongxia [3 ]
机构
[1] South China Normal Univ, Sch Chem & Environm, Guangzhou 510006, Guangdong, Peoples R China
[2] Foshan Univ, Sch Mat Sci & Energy Engn, Foshan 528000, Peoples R China
[3] QUT, Sch Chem Phys & Mech Engn, Brisbane, Qld 4001, Australia
基金
澳大利亚研究理事会;
关键词
SULFUR; ELECTRODE; CRYSTALLINE; STRATEGY; CATHODE; SPHERES; HOST; SES2;
D O I
10.1039/c9ta04614c
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The low transmission rate of lithium ions and the shuttling effect caused by soluble intermediate polysulfide/polyselenide ionic species have greatly limited the performance of Li-SeS2 batteries. In this work, we demonstrate that a separator coating material based on covalent-organic frameworks (COFs), TPB-DMTP-COF, can effectively resolve these issues. It is found that the TPB-DMTP-COF material can selectively adsorb lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) species in the electrolyte through the formation of hydrogen bonding of C-HMIDLINE HORIZONTAL ELLIPSISF and OMIDLINE HORIZONTAL ELLIPSISLi. The accumulation of LiTFSI in the channels of TPB-DMTP-COF leads to a narrower pore size of the material and enhanced transportation of lithium ions in Li-SeS2 cells when the material is used as the separator coating. As a consequence, outstanding performance in terms of energy storage and stability was achieved in the Li-SeS2 battery using the TPB-DMTP-COF separator coating with a specific capacity of 844.6 mA h g(-1) at 0.5C and a SeS2 loading of 2 mg cm(-2). Even at a higher SeS2 loading of 4 mg cm(-2), the cell demonstrated a specific capacity of 684 mA h g(-1) at 1C. After 800 cycles, 416.3 mA h g(-1) was still retained with a capacity decay rate of only 0.05% per cycle. This work sheds light on a new strategy toward high performance Li-SeS2 batteries by using COF based functional separator coating materials.
引用
收藏
页码:16323 / 16329
页数:7
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