Synthesis of an anode material based on mixed calcium vanadatomolybdate and its stability in contact with solid electrolytes

被引:0
|
作者
S. A. Belyakov
S. N. Shkerin
N. V. Selezneva
机构
[1] Russian Academy of Sciences,Institute of High
[2] Yeltsin Ural Federal University,Temperature Electrochemistry, Ural Branch
来源
关键词
Solid Electrolyte; Anode Material; Solid Oxide Fuel Cell; Carbon Impurity; Electrolyte Material;
D O I
暂无
中图分类号
学科分类号
摘要
Mixed calcium vanadatomolybdate CaV0.5Mo0.5O3 was synthesized, and its phase composition was studied in relation to the annealing temperature in the interval 600–1150°C. The heat treatment at 1150°C leads to the formation of a single-phase product of perovskite structure. Transformations in the systems consisting of CaV0.5Mo0.5O3 and solid electrolytes 0.9ZrO2-0.1Y2O3, BaZr0.95Y0.05O3, and La0.88Sr0.12Ga0.82Mg0.18O2.85 (weight ratio 1: 1) in the temperature interval 900–1250°C were studied using X-ray diffraction analysis. The temperatures at which calcium vanadatomolybdate starts to react with the electrolyte materials are considerably higher than the operation temperatures of the solid oxide fuel cells. Recommendations are formulated on the prospects for using CaV0.5Mo0.5O3 as an anode material for solid oxide fuel cells, primarily for those with the electrolyte based on lanthanum gallate.
引用
收藏
页码:706 / 710
页数:4
相关论文
共 50 条
  • [21] Interfacial stability between LiBH4-based complex hydride solid electrolytes and Li metal anode for all-solid-state Li batteries
    Kisu, Kazuaki
    Kim, Sangryun
    Oguchi, Hiroyuki
    Toyama, Naoki
    Orimo, Shin-ichi
    JOURNAL OF POWER SOURCES, 2019, 436
  • [22] Comparative study of thermal stability of lithium metal anode in carbonate and ether based electrolytes
    Gan, Luyu
    Chen, Rusong
    Xu, Xilin
    Zan, Mingwei
    Li, Quan
    Wang, Qiyu
    Yu, Xiqian
    Li, Hong
    JOURNAL OF POWER SOURCES, 2022, 551
  • [23] Work functions and contact potentials of silver-iodide-based solid electrolytes
    Ukshe, E.A.
    Malov, Yu.I.
    Bukun, N.G.
    Mikhailova, A.M.
    Soviet Electrochemistry (English Translation of Elektro-Khimiia), 1988, 24 (06): : 671 - 675
  • [24] Electrochemical Oxidative Stability of Hydroborate-Based Solid State Electrolytes
    Asakura, Ryo
    Duchene, Leo
    Kuehnel, Ruben-Simon
    Remhof, Arndt
    Hagemann, Hans
    Battaglia, Corsin
    ACS APPLIED ENERGY MATERIALS, 2019, 2 (09): : 6924 - 6930
  • [25] Stability of δ-Bi2O3-based solid electrolytes
    Yaremchenko, AA
    Kharton, VV
    Naumovich, EN
    Tonoyan, AA
    MATERIALS RESEARCH BULLETIN, 2000, 35 (04) : 515 - 520
  • [26] Sulfide based solid electrolytes for sodium-ion battery: Synthesis, structure design, stability, and cell performance
    Azmi, Zarina
    Goswami, Arpan K.
    Mohapatra, Saumya R.
    SUSTAINABLE MATERIALS AND TECHNOLOGIES, 2024, 42
  • [27] Characterization of solid oxide fuel cells based on solid electrolytes or mixed ionic electronic conductors
    Riess, I
    Godickemeier, M
    Gauckler, LJ
    SOLID STATE IONICS, 1996, 90 (1-4) : 91 - 104
  • [28] Investigating the ion conductivity and synthesis conditions of calcium monocarborane solid-state electrolytes
    Shinohara, Takara
    Kisu, Kazuaki
    Takagi, Shigeyuki
    Orimo, Shin-ichi
    ENERGY ADVANCES, 2024, 3 (11): : 2758 - 2763
  • [29] Atmospheric Plasma Spraying for Copper Coating of Ceramic Solid Electrolytes for Anode-Free Solid-State Batteries with Increased Interfacial Contact
    Ockel, Manuela
    Borchers, Andre
    Froehlich, Jan
    Petersen, Matthias
    Paschen, Timo
    Christiansen, Silke
    Franke, Joerg
    2024 1ST INTERNATIONAL CONFERENCE ON PRODUCTION TECHNOLOGIES AND SYSTEMS FOR E-MOBILITY, EPTS 2024, 2024,
  • [30] POTENTIOMETRIC SENSORS BASED ON MIXED IONIC ELECTRONIC CONDUCTORS INSTEAD OF SOLID ELECTROLYTES
    RIESS, I
    SOLID STATE IONICS, 1992, 51 (1-2) : 109 - 114