Preparation and Characterization of High-entropy Alloys for Electrocatalysis DOI Creative Commons
Yu Fu

Applied and Computational Engineering, Journal Year: 2025, Volume and Issue: 129(1), P. 123 - 130

Published: Jan. 15, 2025

High-entropy alloys (HEAs), due to their exceptional mechanical properties, thermal stability, and corrosion resistance, have garnered significant attention in the field of materials science. This paper reviews primary preparation methods HEAs, such as carbothermal shock, electrochemical synthesis, spark plasma sintering, analyzes characteristics these terms compositional control synthesis efficiency. Through various characterization techniques, researchers can gain an in-depth understanding microstructure elemental distribution thereby enhancing performance applications catalysis. Although substantial progress has been made HEA research, challenges phase separation equipment costs continue hinder large-scale industrial applications. Future studies should focus on improving controllability environmental sustainability processes advance widespread application HEAs energy, catalysis, electronics.

Language: Английский

Preparation and Characterization of High-entropy Alloys for Electrocatalysis DOI Creative Commons
Yu Fu

Applied and Computational Engineering, Journal Year: 2025, Volume and Issue: 129(1), P. 123 - 130

Published: Jan. 15, 2025

High-entropy alloys (HEAs), due to their exceptional mechanical properties, thermal stability, and corrosion resistance, have garnered significant attention in the field of materials science. This paper reviews primary preparation methods HEAs, such as carbothermal shock, electrochemical synthesis, spark plasma sintering, analyzes characteristics these terms compositional control synthesis efficiency. Through various characterization techniques, researchers can gain an in-depth understanding microstructure elemental distribution thereby enhancing performance applications catalysis. Although substantial progress has been made HEA research, challenges phase separation equipment costs continue hinder large-scale industrial applications. Future studies should focus on improving controllability environmental sustainability processes advance widespread application HEAs energy, catalysis, electronics.

Language: Английский

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