Charge Density and Redox Potential of LiNiO2 Using Ab Initio Diffusion Quantum Monte Carlo

被引:0
|
作者
Saritas K. [1 ]
Grossman J.C. [1 ]
Fadel E.R. [1 ,2 ,3 ]
Kozinsky B. [2 ,3 ]
机构
[1] Materials Science and Engineering Department, Massachusetts Institute of Technology, Cambridge, 02139, MA
[2] John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, 02138, MA
[3] Robert Bosch LLC, Research and Technology Center North America, Cambridge, 02142, MA
来源
Journal of Physical Chemistry C | 2020年 / 124卷 / 11期
关键词
D O I
10.1021/ACS.JPCC.9B10372
中图分类号
学科分类号
摘要
We investigate the charge densities, lithium intercalation potentials, and Li-diffusion barrier energies of LixNiO2 (0.0 < x < 1.0) system using the diffusion quantum Monte Carlo (DMC) method. We find an average redox potential of 4.1(2) eV and a Li-diffusion barrier energy of 0.39(3) eV with DMC. Comparisoin of the charge densities from DMC and density functional theory (DFT) and show that local and semilocal DFT functionals yield spin polarization densities with an incorrect sign on the oxygen atoms. The SCAN functional and Hubbard-U correction improves the polarization density around Ni and O atoms, resulting in smaller deviations from the DMC densities. DMC accurately captures the many-body nature of Ni−O bonding, hence yielding accurate lithium intercalation voltages, polarization densities, and reaction barriers. [Figure presented] © 2020 American Chemical Society. All rights reserved.
引用
收藏
页码:5893 / 5901
页数:8
相关论文
共 50 条
  • [1] Charge Density and Redox Potential of LiNiO2 Using Ab Initio Diffusion Quantum Monte Carlo
    Saritas, Kayahan
    Fadel, Eric R.
    Kozinsky, Boris
    Grossman, Jeffrey C.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2020, 124 (11): : 5893 - 5901
  • [2] An ab initio study of TiC with the diffusion quantum Monte Carlo method
    Sokolova, S
    Lüchow, A
    CHEMICAL PHYSICS LETTERS, 2000, 320 (5-6) : 421 - 424
  • [3] Charge density measurement and bonding character in LiNiO2
    Cao, Jiefeng
    Guo, Chao
    Zou, Huamin
    JOURNAL OF SOLID STATE CHEMISTRY, 2009, 182 (03) : 555 - 559
  • [4] Monte Carlo simulations of nitrogen using an ab initio potential
    Leonhard, K
    Deiters, UK
    MOLECULAR PHYSICS, 2002, 100 (15) : 2571 - 2585
  • [5] Ab initio molecular dynamics with quantum Monte Carlo
    Luo, Ye
    Sorella, Sandro
    FRONTIERS IN MATERIALS, 2015, 2
  • [6] Reactive Monte Carlo sampling with an ab initio potential
    Leiding, Jeff
    Coe, Joshua D.
    JOURNAL OF CHEMICAL PHYSICS, 2016, 144 (17):
  • [7] An ab initio and diffusion Monte Carlo study of the potential energy surface of the CO dimer
    Meredith, AW
    Stone, AJ
    JOURNAL OF PHYSICAL CHEMISTRY A, 1998, 102 (02): : 434 - 445
  • [8] Speed-up of Ab Initio Hybrid Monte Carlo and Ab Initio Path Integral Hybrid Monte Carlo Simulations by Using an Auxiliary Potential Energy Surface
    Nakayama, Akira
    Taketsugu, Tetsuya
    Shiga, Motoyuki
    CHEMISTRY LETTERS, 2009, 38 (10) : 976 - 977
  • [9] Bandgaps in free-standing monolayer TiO2: Ab initio diffusion quantum Monte Carlo study
    Huang, Xia
    Zhang, Hong
    Cheng, Xin-Lu
    INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 2021, 121 (12)
  • [10] Ab initio diffusion Monte Carlo calculations of the quantum behavior of CH5+ in full dimensionality
    McCoy, AB
    Braams, BJ
    Brown, A
    Huang, XC
    Jin, Z
    Bowman, JM
    JOURNAL OF PHYSICAL CHEMISTRY A, 2004, 108 (23): : 4991 - 4994