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用于锂离子电池的中空多孔VO微球的电化学性质及简易制备方法

Electrochemical properties and facile preparation of hollow porous VO microspheres for lithium-ion batteries.

作者信息

Xue Lichun, Li Yueqing, Lin Wentao, Chen Feiming, Chen Guichan, Chen Dengjie

机构信息

College of Chemistry and Materials Science, Guangdong Provincial Key Laboratory of Functional Supramolecular Coordination Materials and Applications, Guangdong Engineering & Technology Research Centre of Graphene-Like Materials and Products, Jinan University, Guangzhou 510632, China.

Guangdong Yunfu Vocational College of Chinese Medicine, Yunfu 527400, China.

出版信息

J Colloid Interface Sci. 2023 May 15;638:231-241. doi: 10.1016/j.jcis.2023.01.131. Epub 2023 Feb 1.

Abstract

Vanadium pentoxide (VO) has shown great potential to be used in lithium-ion batteries (LIBs), but it has limited applications because it has cycle instability and poor rate capability, and its lithiation mechanism is not well understood. In this work, hollow porous VO microspheres (HPVOM) were obtained by a facile poly(vinylpyrrolidone) and ethylene glycol-assisted soft-template solvothermal method. Half cells with HPVOM exhibited good capacity, rate capability, and stability, delivering 407.9 mAh g at 1.0 A g after 700 cycles. Furthermore, a LiFePO/HPVOM full cell had a discharge capacity of 109.9 mAh g after 150 cycles at 0.1 A g. Using an equivalent circuit model (ECM) and distribution of relaxation times (DRT), we found that the charge-transfer (including the solid-state interface resistance) and bulk resistances varied regularly with the charge/discharge state, while the electrolyte resistance was largely maintained. The bulk resistance finally vanished, indicative of dynamic activation. The method used to prepare the hollow microspheres, as well as the display of electrode kinetics via ECM and DRT, could be broadly applied in developing efficient electrodes for LIBs.

摘要

五氧化二钒(VO)在锂离子电池(LIBs)中展现出了巨大的应用潜力,但由于其循环稳定性差、倍率性能不佳且锂化机制尚不明确,限制了它的应用。在本研究中,通过简便的聚乙烯吡咯烷酮和乙二醇辅助的软模板溶剂热法制备了中空多孔VO微球(HPVOM)。含有HPVOM的半电池展现出良好的容量、倍率性能和稳定性,在700次循环后,1.0 A g的电流密度下放电比容量为407.9 mAh g。此外,LiFePO/HPVOM全电池在0.1 A g的电流密度下循环150次后,放电比容量为109.9 mAh g。使用等效电路模型(ECM)和弛豫时间分布(DRT),我们发现电荷转移(包括固态界面电阻)和体电阻随充放电状态有规律地变化,而电解质电阻基本保持不变。体电阻最终消失,表明发生了动态活化。制备中空微球的方法以及通过ECM和DRT对电极动力学的展示,可广泛应用于开发高效的LIBs电极。

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