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- W4384157002 endingPage "144751" @default.
- W4384157002 startingPage "144751" @default.
- W4384157002 abstract "Use of spinel materials in heterogeneous catalysis is highly attractive because of their unique properties, including their high thermal and chemical stability, good electrical conductivity, and tunable catalytic activity. In this review, recent advances in the development of enhanced hydrocarbon reforming catalysts, including spinel materials for direct internal reforming solid oxide fuel cell (DIR-SOFC) applications, are examined comprehensively. This review discusses the structural characteristics of spinel materials, including their crystal structure and redox behavior. To enhance catalytic performance, various strategies, such as doping with metals or non-metals, surface modification, and heterojunction formation, have been employed. The advantages and limitations of these strategies and their effects on the catalytic activity and selectivity of spinel catalysts are analyzed. This review also explores the challenges and future prospects in the development of spinel catalysts, including the optimization of synthesis methods, the development of new catalytic systems, and a deeper understanding of the reaction mechanisms at the atomic and molecular levels. Overall, this review highlights the potential of spinel materials as efficient and versatile catalysts for DIR-SOFC applications, providing a valuable reference for catalysis researchers who aim to develop new and improved spinel catalysts for DIR-SOFC. Additionally, the review discusses the future potential for the novel applications of spinel materials in DIR-SOFC." @default.
- W4384157002 created "2023-07-14" @default.
- W4384157002 creator A5021220811 @default.
- W4384157002 creator A5032210827 @default.
- W4384157002 creator A5066972901 @default.
- W4384157002 creator A5074326112 @default.
- W4384157002 creator A5078295061 @default.
- W4384157002 date "2023-09-01" @default.
- W4384157002 modified "2023-09-27" @default.
- W4384157002 title "Advanced materials for heterogeneous catalysis: A comprehensive review of spinel materials for direct internal reforming of methane in solid oxide fuel cell" @default.
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