Visualizing lithium ions in the crystal structure of Li3PO4 by in situ neutron diffraction

被引:3
作者
Manawan, Maykel [1 ]
Kartini, Evvy [2 ,3 ]
Avdeev, Maxim [4 ]
机构
[1] Univ Pertahanan Indonesia, Teknol Daya Gerak, Jl Sentul Citeureup, Bogor 16810, West Java, Indonesia
[2] Indonesia Nucl Energy Agcy BATAN, Ctr Sci & Technol Adv Mat, Tangerang 15314, Banten, Indonesia
[3] Natl Battery Res Inst, Commercial Int Sch, Edu Ctr Bldg 2nd Floor Unit 22260,Lot 2 8, Tangerang 15314, Banten, Indonesia
[4] Australian Nucl Sci & Technol Org, New Illawarra Rd, Lucas Heights, NSW 2234, Australia
来源
JOURNAL OF APPLIED CRYSTALLOGRAPHY | 2021年 / 54卷
关键词
neutron diffraction; Rietveld analysis; maximum entropy method; bond valence sum; anisotropic displacement parameters; nuclear density distribution; 3-DIMENSIONAL VISUALIZATION; PERFORMANCE; REFINEMENT; PROGRAM;
D O I
10.1107/S1600576721008700
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Li3PO4 is known to demonstrate Li+ ionic conductivity, making it a good candidate for solid electrolytes in all-solid batteries. Understanding the crystal structure and its connection to Li+ diffusion is essential for further rational doping to improve the ionic transport mechanism. The purpose of this study is to investigate this mechanism using anisotropic displacement parameters (ADPs), nuclear density distribution and bond valence mapping. In situ neutron powder diffraction experiments have been performed using the high-resolution powder diffractometer ECHIDNA at the OPAL reactor, Australian Centre for Neutron Scattering, Australian Nuclear Science and Technology Organisation, NSW, Australia. The ADPs and nuclear density distribution were determined from the analysis of neutron diffraction data using the Rietveld method, whereas the bond valence map was calculated from the refined structure. The crystal structure remained unchanged as the temperature was increased (3, 100, 300 and 400 K). However, the ADPs show a greater increase in anisotropy in the a and b axes compared with the c axis, indicating the tendency of the ionic movement. By combining nuclear density distribution and bond valence mapping, the most likely lithium-ion diffusion in the crystal structure can be visualized.
引用
收藏
页码:1409 / 1415
页数:7
相关论文
共 50 条
  • [21] Revised crystal structure model of Li2NH by neutron powder diffraction
    Ohoyama, K
    Nakamori, Y
    Orimo, S
    Yamada, K
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2005, 74 (01) : 483 - 487
  • [22] Improving the Stability of Li Metal Anode/Solid Electrolyte Interfaces via an Li3PO4 Intermediate Layer: An Investigation of Surface Chemistry and Electronic Band Structure
    Iida, Shin-ichi
    Terashima, Masahiro
    Mamiya, Kazutoshi
    Kimoto, Takahito
    Sasaki, Shunsuke
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2023, 170 (09)
  • [23] Neutron Diffraction Analysis of a Single-Crystal Structure of Rb0.51Tl0.49H2PO4
    Oh, In-Hwan
    Meven, Martin
    Heger, Gernot
    Lee, Kwang-Sei
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2011, 80 (08)
  • [24] Effect of ball-milling and lithium insertion on the lithium mobility and structure of Li3Fe2(PO4)3
    Cabana, Jordi
    Shirakawa, Junichi
    Nakayama, Masanobu
    Wakihara, Masataka
    Grey, Clare P.
    JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (27) : 10012 - 10020
  • [25] A NEUTRON-DIFFRACTION STUDY ON THE DEUTERATION EFFECT IN CSH2PO4 CRYSTAL
    IWATA, Y
    DEGUCHI, K
    MITANI, S
    SHIBUYA, I
    ONODERA, Y
    NAKAMURA, E
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1994, 63 (11) : 4044 - 4050
  • [26] Effect of Particle Size of Li3PO4 on LiFePO4 Cathode Material Properties Prepared by Hydrothermal Method
    Ma, Yuan
    Li, Tao
    Jiang, Fei
    Jiang, Yuqi
    Gao, Feilong
    Liu, Lingyun
    Wu, Yaodong
    Meng, Ying
    Ma, Xiaohang
    Zi, Zhenfa
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2022, 17 (04):
  • [27] Crystal structure analysis of Rb0.5Tl0.5H2PO4 at room temperature by neutron diffraction
    Oh, In-Hwan
    Mattauch, Stefan
    Heger, Gernot
    Lee, Cheol Eui
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2008, 64 : C493 - C493
  • [28] Crystal structure and phase transitions of the lithium ionic conductor Li3PS4
    Homma, Kenji
    Yonemura, Masao
    Kobayashi, Takeshi
    Nagao, Miki
    Hirayama, Masaaki
    Kanno, Ryoji
    SOLID STATE IONICS, 2011, 182 (01) : 53 - 58
  • [29] Single-crystal neutron diffraction on γ-LiAlO2: structure determination and estimation of lithium diffusion pathway
    Wiedemann, Dennis
    Indris, Sylvio
    Meven, Martin
    Pedersen, Bjorn
    Boysen, Hans
    Uecker, Reinhard
    Heitjans, Paul
    Lerch, Martin
    ZEITSCHRIFT FUR KRISTALLOGRAPHIE-CRYSTALLINE MATERIALS, 2016, 231 (03): : 189 - 193
  • [30] Alkali Ion Disorder in (Na,Li)2FeTi(PO4)3 and Na2FeZr(PO4)3 NASICON Phases by Neutron Diffraction
    Sommariva, M.
    Catti, M.
    Comotti, A.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2004, 60 : S258 - S258