Growth of proton conducting strontium cerate composites
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Published:2023-12-12
Issue:4
Volume:33
Page:1752
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ISSN:2630-0508
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Container-title:Journal of Metals, Materials and Minerals
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language:
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Short-container-title:J Met Mater Miner
Author:
SHILPA C. K.,JASIRA S. V.,VEENA V. P.,NISSAMUDEEN K. M.
Abstract
The increased population and modern way of life have greatly depleted the effectiveness of traditional energy production methods. There is a strong demand for environmentally friendly and renewable alternatives to replace the old systems. Sustainable energy production systems have emerged as a vital replacement for the conventional use of fossil fuels. Among these, solid oxide fuel cells (SOFCs) play a significant role. Recently, researchers have developed electrolyte components for SOFCs using proton-conducting perovskites with excellent conductivity. This critical assessment presents a yearly overview of innovative strategies for utilizing doped strontium cerate perovskites in energy production systems, a novel approach. The importance of identifying dopants that can enhance conductivity and stability in strontium cerate composites is emphasized, creating a crucial element for high-performance energy systems. Through a comparative study, it's been found that rare earth elements with smaller ionic radii, such as thulium-doped strontium cerium zirconate in an additional composite form, can outperform the traditionally used ytterbium-doped strontium cerate composites in proton-conducting applications.
Publisher
Metallurgy and Materials Science Research Institute, Chulalongkorn University
Subject
General Materials Science,Materials Science (miscellaneous),Metals and Alloys,Biomaterials,Ceramics and Composites,Polymers and Plastics