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Properties of Ti-Based Hydrogen Storage Alloy

Properties of Ti-Based Hydrogen Storage Alloy
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摘要 An efficient and safe hydrogen storage method is one of the important links for the large-scale development of hydrogen in the future. Because of its low price and simple design, Ti-based hydrogen storage alloys are considered to be suitable for practical applications. In this paper, we review the latest research on Ti-based hydrogen storage alloys. Firstly, the machine learning and density functional theory are introduced to provide theoretical guidance for the optimization of Ti-based hydrogen storage alloys. Then, in order to improve the hydrogen storage performance, we briefly introduce the research of AB type and AB2 type Ti-based alloys, focusing on doping elements and adaptive after treatment. Finally, suggestions for the future research and development of Ti-based hydrogen storage alloys are proposed. . An efficient and safe hydrogen storage method is one of the important links for the large-scale development of hydrogen in the future. Because of its low price and simple design, Ti-based hydrogen storage alloys are considered to be suitable for practical applications. In this paper, we review the latest research on Ti-based hydrogen storage alloys. Firstly, the machine learning and density functional theory are introduced to provide theoretical guidance for the optimization of Ti-based hydrogen storage alloys. Then, in order to improve the hydrogen storage performance, we briefly introduce the research of AB type and AB2 type Ti-based alloys, focusing on doping elements and adaptive after treatment. Finally, suggestions for the future research and development of Ti-based hydrogen storage alloys are proposed. .
作者 Rui Xu Tao Cheng Chaoyu Li Xue Yang Junfeng Rong Rui Xu;Tao Cheng;Chaoyu Li;Xue Yang;Junfeng Rong(Sinopec Research Institute of Petroleum Processing Co., Ltd., Beijing, China)
出处 《Journal of Power and Energy Engineering》 2024年第3期99-114,共16页 电力能源(英文)
关键词 Renewable Energy Hydrogen Storage Ti-Based Alloy Machine Learning Renewable Energy Hydrogen Storage Ti-Based Alloy Machine Learning
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