In-situ synthesis of porous metal fluoride@carbon composite via simultaneous etching/fluorination enabled superior Li storage performance

被引:53
作者
Du, Kang [1 ]
Tao, Runming [2 ,3 ]
Guo, Chi [1 ]
Li, Haifeng [1 ]
Liu, Xiaolang [1 ]
Guo, Pingmei [1 ]
Wang, Deyu [1 ]
Liang, Jiyuan [1 ]
Li, Jianlin [3 ]
Dai, Sheng [2 ]
Sun, Xiao-Guang [2 ]
机构
[1] Jianghan Univ, Sch Optoelect Mat & Technol, Key Lab Optoelect Chem Mat & Devices, Minist Educ, Wuhan 430056, Peoples R China
[2] Oak Ridge Natl Lab, Chem Sci Div, Oak Ridge, TN 37830 USA
[3] Oak Ridge Natl Lab, Electrificat & Energy Infrastruct Div, Oak Ridge, TN 37831 USA
关键词
Porous materials; Metal fluorides; Li -free cathodes; Cathode -electrolyte interphase (CEI); Lithium -ion batteries; In -situ synthesis; CATHODE MATERIAL; FEF3; NANOCRYSTALS; ENERGY-STORAGE; ION BATTERIES; LITHIUM METAL; NANOPARTICLES; FLUORINATION; FABRICATION; ANODE; ELECTRODES;
D O I
10.1016/j.nanoen.2022.107862
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
Transition metal fluorides as Li-free conversion-type cathode materials have high theoretical specific capacities, however, their preparation strategy, sluggish electrochemical kinetic and poor cyclability have impeded their wide adoption in lithium-ion batteries. Herein, a facile in-situ synthesis of porous metal-fluoride-carbon com-posites is accomplished via simultaneous polytetrafluorethylene-based hard template etching and metal fluori-nation. This not only facilitates fast electron transfer and lithium-ion diffusion kinetics, but also buffers severe volume fluctuation during lithiation/delithation and enables the formation of a uniform and thin Li2CO3/LiF-rich cathode-electrolyte interphase. As a proof of concept, the as-prepared porous FeF3 @C (p-FeF3 @C) indeed ex-hibits a high specific capacity of 230 mAh g-1 at 0.1 C together with an excellent capacity retention of 92.5% at 1 C for 200-cycles. Moreover, the practicality of the strategy is demonstrated by the superb electrochemical performance of the full-cells coupled with pre-lithiated graphite anodes. Therefore, the proposed novel synthetic strategy will enlighten the future design of high-performance metal-fluoride-carbon composites with porous structure for energy storage applications.
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页数:15
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