Stephen J. Skinner, Miguel A. Laguna-Bercero
Fuel cells are widely regarded as a next generation technology that will contribute to reductions in emissions of gases responsible for climate change such as CO2. The objective of this paper is to explore advanced inorganic materials for solid oxide fuel cells (SOFCs), which are considered one of the most promising types of fuel cells for large scale power generation and combined heat and power applications. We review the current advancements and modifications in the basic concepts of fuel cells that enable operation over a variety of temperatures and fuel types. The methodology includes a detailed examination of materials utilized in SOFCs, focusing on their electrochemical performance, structural properties, and the advantages they offer over conventional combustion-based power generation methods. The results indicate that advanced materials such as Yttria-stabilized zirconia (YSZ) and various perovskites demonstrate significant improvements in ionic conductivity and overall performance of SOFCs. This paper contributes valuable insights into materials innovation, aiming to enhance the efficiency and viability of SOFC technologies.
@article{d247d94c-77d5-4680-9b98-ff67022ee5fd,
title={Advanced Inorganic Materials for Solid Oxide Fuel Cells},
author={Stephen J. Skinner and Miguel A. Laguna-Bercero},
year={2008},
language={en}
}TY - JOUR TI - Advanced Inorganic Materials for Solid Oxide Fuel Cells AU - Stephen J. Skinner AU - Miguel A. Laguna-Bercero PY - 2008 LA - en ER -
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