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锂离子电池橄榄石和钛铁矿正极材料中混合过渡金属的密度泛函理论研究

Density Functional Theory Investigation of Mixed Transition Metals in Olivine and Tavorite Cathode Materials for Li-Ion Batteries.

作者信息

Alfaruqi Muhammad Hilmy, Kim Seokhun, Park Sohyun, Lee Seulgi, Lee Jun, Hwang Jang-Yeon, Sun Yang-Kook, Kim Jaekook

机构信息

Department of Materials Science and Engineering, Chonnam National University, 300 Yongbong-dong, Bukgu, Gwangju 61186, Republic of Korea.

Departemen Teknik Metalurgi, Universitas Teknologi Sumbawa, Jl. Raya Olat Maras, Sumbawa 84371, Nusa Tenggara Barat, Republic of Indonesia.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 8;12(14):16376-16386. doi: 10.1021/acsami.9b23367. Epub 2020 Mar 30.

Abstract

Lithium-ion batteries (LIBs) are widely used in various electronic devices and have garnered a huge amount of attention. In addition, evaluation of the intrinsic properties of LIB cathode materials is of considerable interest for practical applications. Therefore, through first-principles calculations based on the density functional theory, we investigated the structural, electronic, electrochemical, and kinetic properties of mixed transition metals, that is, Ni-substituted LiMnPO (LMP) and LiMnPOF (LMPF) cathode materials, that is, LiMnNiPO (LMNP) and LiMnNiPOF (LMNPF), respectively, which have not been extensively studied. We also evaluated their delithiated phases, that is, MnNiPO (MNP) and MnNiPOF (MNPF). Our calculations suggest that Ni substitution significantly affected the structural and electrochemical properties. After Li insertion, the MNPF unit-cell volume increased by about 8%, lower than that of pristine MnPOF. The Li intercalation voltage also increased in LMNP (4.27 V) and LMNPF (5.23 V). In addition, the migration barrier was calculated to be 0.4 eV for LMNPF, lower than that of LMPF. This study may provide insights for developing LMNP and LMNPF cathode materials in LIB applications.

摘要

锂离子电池(LIBs)广泛应用于各种电子设备,并已获得了大量关注。此外,对LIB正极材料本征性质的评估对于实际应用具有相当大的意义。因此,通过基于密度泛函理论的第一性原理计算,我们研究了混合过渡金属的结构、电子、电化学和动力学性质,即分别为未被广泛研究的镍取代的LiMnPO(LMP)和LiMnPOF(LMPF)正极材料,即LiMnNiPO(LMNP)和LiMnNiPOF(LMNPF)。我们还评估了它们的脱锂相,即MnNiPO(MNP)和MnNiPOF(MNPF)。我们的计算表明,镍取代显著影响了结构和电化学性质。锂嵌入后,MNPF的晶胞体积增加了约8%,低于原始MnPOF。LMNP(4.27 V)和LMNPF(5.23 V)中的锂嵌入电压也有所增加。此外,计算得出LMNPF的迁移势垒为0.4 eV,低于LMPF。这项研究可能为在LIB应用中开发LMNP和LMNPF正极材料提供见解。

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