详细信息

MOF-derived porous Co3O4-NC nanoflake arrays on carbon fiber cloth as stable hosts for dendrite-free Li metal anodes  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:MOF-derived porous Co3O4-NC nanoflake arrays on carbon fiber cloth as stable hosts for dendrite-free Li metal anodes

作者:Jiang, Guangyu[1];Jiang, Nan[1];Zheng, Nan[1];Chen, Xiao[1];Mao, Jiayi[1];Ding, Guoyu[2];Li, Yahui[2];Sun, Fugen[2];Li, Yongsheng[1]

机构:[1]East China Univ Sci & Technol, Sch Mat Sci & Engn, Minist Educ, Lab Low Dimens Mat Chem,Key Lab Ultrafine Mat, Shanghai 200237, Peoples R China;[2]Nanchang Univ, Inst Photovolta, 999 Qianhu Rd, Nanchang 330031, Jiangxi, Peoples R China

年份:2019

卷号:23

起止页码:181

外文期刊名:ENERGY STORAGE MATERIALS

收录:;EI(收录号:20192907206960);WOS:【SCI-EXPANDED(收录号:WOS:000495867200020)】;

基金:This work was financially supported by National Natural Science Foundation of China for Innovative Research Groups (Grant No. 51621002), National Natural Science Foundation of China (Grant Nos. 51502090 and 51672083), Program of Shanghai Academic/Technology Research Leader (Grant No. 18XD1401400), Basic Research Program of Shanghai (Grant No. 17JC1404702); 111 Project (Grant No. B14018), the Fundamental Research Funds for the Central Universities (Grant No. 222201718002) and Natural Science Foundation of Jiangxi Province (Grant Nos. 20171BAB216007 and 20181BAB206006).

语种:英文

外文关键词:MOF-derives; Nitrogen-dopants; Co3O4 nanoparticles; Carbon fiber cloth; Lithium metal anodes

摘要:A highly stable and wettable host to confine molten Li for the Li metal composite anode has been successfully fabricated through in-situ growth of MOF-derived, Co3O4-embedded and nitrogen-doped porous carbon nanoflake arrays on the commercial carbon fiber cloth (CFC/Co3O4-NC). It is demonstrated that the chemical reaction of the embedded Co3O4 with molten Li, the lithiophilic nature of the nitrogen dopants and the capillary force of the porous structures contribute synergistically to the superior Li wettability of the CFC/Co3O4-NC host. Moreover, after the intense chemical lithiation and rapid melt-infusion of massive Li, the wettable, stable and conductive nanoflake array frameworks of the CFC/Co3O4-NC could be well maintained, providing the uniform distribution of deposited Li, the fast charge transfer for Li/Li+ redox reactions and the reduced local current density during cycling. Consequently, the resulting CFC/Co-NC@Li composite anodes could effectively alleviate the volume change and suppress the growth of Li dendrites, demonstrating an ultralong and stable lifetime for repeated Li stripping/plating of 500 cycles (1000 h) with low overpotential of 18 mV and negligible voltage fluctuation at 1 mA cm(-2) in symmetric cells. Furthermore, in full-cell configurations with LiFePO4 or sulfur cathodes, the CFC/Co-NC@Li anodes show greatly improved cycling stability and rate capability. These encouraging results suggest that the MOF-derived porous Co3O4-NC nanoflake arrays on the commercial carbon fiber cloth should be a promising host to construct dendrite-free lithium metal anodes for advanced lithium metal batteries.

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