Overview on Ceramic and Nanostructured Materials for Solid Oxide Fuel Cells (SOFCs) Working at Different Temperatures

被引:17
|
作者
Priya, S. Dharani [1 ]
Selvakumar, A. Immanuel [2 ]
Nesaraj, A. Samson [1 ]
机构
[1] Karunya Inst Technol & Sci Deemed Be Univ, Dept Appl Chem, Coimbatore 641114, Tamil Nadu, India
[2] Karunya Inst Technol & Sci Deemed Be Univ, Dept Elect & Elect Engn, Coimbatore 641114, Tamil Nadu, India
关键词
Solid Oxide Fuel Cells; Low Temperature; Nanostructured Ceramic Materials; Components; Review; TRIPLE PHASE-BOUNDARY; HIGH-PERFORMANCE; ANODE MATERIALS; METALLIC INTERCONNECTS; NANOCOMPOSITE ANODE; OXYGEN REDUCTION; CATHODE MATERIAL; ELECTROLYTE; CO; FABRICATION;
D O I
10.33961/jecst.2019.00612
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The article provides information on ceramic / nanostructured materials which are suitable for solid oxide fuel cells (SOFCs) working between 500 to 1000 degrees C. However, low temperature solid oxide fuel cells LTSOFCs working at less than 600 degrees C are being developed now-a-days with suitable new materials and are globally explored as the "future energy conversion devices". The LTSOFCs device has emerged as a novel technology especially for stationary power generation, portable and transportation applications. Operating SOFC at low temperature (i.e. < 600 degrees C) with higher efficiency is a bigger challenge for the scientific community since in low temperature regions, the efficiency might be less and the components might have exhibited lower catalytic activity which may result in poor cell performance. Employing new and novel nanoscale ceramic materials and composites may improve the SOFC performance at low temperature ranges is most focused now-a-days. This review article focuses on the overview of various ceramic and nanostructured materials and components applicable for SOFC devices reported by different researchers across the globe. More importance is given for the nanostructured materials and components developed for LTSOFC technology so far.
引用
收藏
页码:99 / 116
页数:18
相关论文
共 50 条
  • [1] Optimizing cathode materials for intermediate-temperature solid oxide fuel cells (SOFCs): Oxygen reduction on nanostructured lanthanum nickelate oxides
    Carneiro, Juliana Silva Alves
    Brocca, Roger Antunes
    Lucena, Max Laylson Ribeiro Sampaio
    Nikolla, Eranda
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2017, 200 : 106 - 113
  • [2] Materials for Connecting Solid Oxide Fuel Cells (Overview)
    Brodnikovskyi, D. M.
    POWDER METALLURGY AND METAL CERAMICS, 2024, 63 (3-4) : 184 - 193
  • [3] Materials and concepts for solid oxide fuel cells (SOFCs) in stationary and mobile applications
    Weber, A
    Ivers-Tiffée, E
    JOURNAL OF POWER SOURCES, 2004, 127 (1-2) : 273 - 283
  • [4] A tutorial review on solid oxide fuel cells: fundamentals, materials, and applications
    Sikstrom, Daniel
    Thangadurai, Venkataraman
    IONICS, 2024,
  • [5] Materials and Components for Low Temperature Solid Oxide Fuel Cells - an Overview
    Radhika, D.
    INTERNATIONAL JOURNAL OF RENEWABLE ENERGY DEVELOPMENT-IJRED, 2013, 2 (02): : 87 - 95
  • [6] Nanostructured anode materials for low temperature solid oxide fuel cells: Synthesis and electrochemical characterizations
    Mumtaz, Saleem
    Ahmad, M. Ashfaq
    Raza, Rizwan
    Khan, M. Ajmal
    Ashiq, M. Naeem
    Abbas, Ghazanfar
    CERAMICS INTERNATIONAL, 2019, 45 (17) : 21688 - 21697
  • [7] Comprehensive review of chromium deposition and poisoning of solid oxide fuel cells (SOFCs) cathode materials
    Zhou, Lingfeng
    Mason, Jerry H.
    Li, Wenyuan
    Liu, Xingbo
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2020, 134
  • [8] Nanostructured anodes for solid oxide fuel cells
    Gorte, R. J.
    Vohs, J. M.
    CURRENT OPINION IN COLLOID & INTERFACE SCIENCE, 2009, 14 (04) : 236 - 244
  • [9] Comparison of electrochemical impedance spectra for electrolyte-supported solid oxide fuel cells (SOFCs) and protonic ceramic fuel cells (PCFCs)
    Sumi, Hirofumi
    Shimada, Hiroyuki
    Yamaguchi, Yuki
    Mizutani, Yasunobu
    Okuyama, Yuji
    Amezawa, Koji
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [10] Scalable nanostructured membranes for solid-oxide fuel cells
    Tsuchiya, Masaru
    Lai, Bo-Kuai
    Ramanathan, Shriram
    NATURE NANOTECHNOLOGY, 2011, 6 (05) : 282 - 286