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用于碱离子电池的KTiOPOM(M = K、Na和Li)阳极的密度泛函理论研究

DFT investigations of KTiOPOM (M = K, Na, and Li) anodes for alkali-ion battery.

作者信息

Huang Jiajia, Cai Xu, Li Yanli, Fang Zhongpu, Li Yi, Lin Wei, Huang Shuping, Zhang Yongfan

机构信息

College of Chemistry, Fuzhou University, Fuzhou, Fujian 350108, People's Republic of China.

出版信息

J Chem Phys. 2022 May 28;156(20):204702. doi: 10.1063/5.0090071.

Abstract

The properties of KTiOPOM (M = K, Na, and Li; x = 0.000-1.000) as an anode for potassium-ion batteries (PIBs), sodium-ion batteries (SIBs), and lithium-ion batteries (LIBs) are investigated by density functional theory calculations. Our work reveals that the electrochemical performance of KTiOPO as an anode for PIBs is superior to that for SIBs and LIBs, in terms of average voltage and ion diffusion kinetics. The ab initio molecular dynamics simulations indicate that the KTiOPOM anode exhibits high structural stability, and alkali ion intercalation contributes to accelerating ion diffusion during the charging process. Particularly, the low activation energy of 0.406 eV of K migration on surface KTP(210), obtained by the climbing-image nudged elastic band method, suggests a high-rate capability. The systematical comparison of the performance of KTiOPO as an anode for PIBs, SIBs, and LIBs on the theoretical perspective clarifies that a large channel is not always promising for small radius ion intercalation and diffusion.

摘要

通过密度泛函理论计算研究了KTiOPOM(M = K、Na和Li;x = 0.000 - 1.000)作为钾离子电池(PIB)、钠离子电池(SIB)和锂离子电池(LIB)阳极的性能。我们的工作表明,就平均电压和离子扩散动力学而言,KTiOPO作为PIB阳极的电化学性能优于SIB和LIB。从头算分子动力学模拟表明,KTiOPOM阳极表现出高结构稳定性,并且碱金属离子嵌入有助于在充电过程中加速离子扩散。特别是,通过爬坡图像推挤弹性带方法获得的表面KTP(210)上K迁移的低活化能0.406 eV表明其具有高倍率性能。从理论角度对KTiOPO作为PIB、SIB和LIB阳极的性能进行系统比较,阐明了大通道对于小半径离子嵌入和扩散并不总是有前景的。

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