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TiO2 modified FeS Nanostructures with Enhanced Electrochemical Performance for Lithium-Ion Batteries

机译:锂离子电池具有增强电化学性能的TiO2修饰的FeS纳米结构

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摘要

Anatase TiO2 modified FeS nanowires assembled by numerous nanosheets were synthesized by using a typical hydrothermal method. The carbon-free nanocoated composite electrodes exhibit improved reversible capacity of 510 mAh g−1 after 100 discharge/charge cycles at 200 mA g−1, much higher than that of the pristine FeS nanostructures, and long-term cycling stability with little performance degradation even after 500 discharge/charge cycles at current density of 400 mA g−1. Full batteries fabricated using the FeS@TiO2 nanostructures anode and the LiMn2O4 nanowires cathode with excellent stability, and good rate capacities could also be achieved. The enhanced electrochemical performance of the composite electrodes can be attributed to the improved conductively of the integrated electrodes and the enhanced kinetics of lithium insertion/extraction at the electrode/electrolyte interface because of the incorporation of anatase TiO2 phase.
机译:采用典型的水热法合成了由许多纳米片组装而成的锐钛矿型TiO2修饰的FeS纳米线。无碳纳米涂层复合电极在200> mA g -1 下经过100次放电/充电循环后,可逆容量达到510 mAh g -1 ,远高于其。原始的FeS纳米结构,即使在电流密度为400 mA g -1 进行500次充放电循环后,其长期循环稳定性也几乎不会降低性能。使用FeS @ TiO2纳米结构阳极和LiMn2O4纳米线阴极制造的完整电池具有出色的稳定性和良好的倍率容量。复合电极增强的电化学性能可以归因于集成电极的改进的导电性以及由于引入了锐钛矿型TiO 2相而在电极/电解质界面处锂插入/萃取的增强动力学。

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