{"title":"高熵合金和高熵功能材料的前沿领域","authors":"Wen-Tao Zhang, Xue-Qian Wang, Feng-Qi Zhang, Xiao-Ya Cui, Bing-Bing Fan, Jia-Ming Guo, Zhi-Min Guo, Rui Huang, Wen Huang, Xu-Bo Li, Meng-Ru Li, Yan Ma, Zhi-Hua Shen, Yong-Gang Sun, De-Zhuang Wang, Fei-Yang Wang, Li-Qiang Wang, Nan Wang, Tian-Li Wang, Wei Wang, Xiao-Yang Wang, Yi-Han Wang, Fu-Jie Yu, Yu-Zhen Yin, Ling-Kun Zhang, Yi Zhang, Jian-Yang Zhang, Qi Zhao, Yu-Ping Zhao, Xin-Dong Zhu, Yasir Sohail, Ya-Nan Chen, Tao Feng, Qi-Long Gao, Hai-Yan He, Yong-Jiang Huang, Zeng-Bao Jiao, Hua Ji, Yao Jiang, Qiang Li, Xiao-Ming Li, Wei-Bing Liao, Huai-Jun Lin, Hui Liu, Qi Liu, Qing-Feng Liu, Wei-Di Liu, Xiong-Jun Liu, Yang Lu, Yi-Ping Lu, Wen Ma, Xue-Fei Miao, Jie Pan, Qing Wang, Hong-Hui Wu, Yuan Wu, Tao Yang, Wei-Ming Yang, Qian Yu, Jin-Yu Zhang, Zhi-Gang Chen, Liang Mao, Yang Ren, Bao-Long Shen, Xun-Li Wang, Zhe Jia, He Zhu, Zhen-Duo Wu, Si Lan","doi":"10.1007/s12598-024-02852-0","DOIUrl":null,"url":null,"abstract":"<div><p>Owing to their exceptional properties, high-entropy alloys (HEAs) and high-entropy materials have emerged as promising research areas and shown diverse applications. Here, the recent advances in the field are comprehensively reviewed, organized into five sections. The first section introduces the background of HEAs, covering their definition, significance, application prospects, basic properties, design principles, and microstructure. The subsequent section focuses on cutting-edge high-entropy structural materials, highlighting developments such as nanostructured alloys, grain boundary engineering, eutectic systems, cryogenic alloys, thin films, micro-nano-lattice structures, additive manufacturing, high entropy metallic glasses, nano-precipitate strengthened alloys, composition modulation, alloy fibers, and refractory systems. In the following section, the emphasis shifts to functional materials, exploring HEAs as catalysts, magneto-caloric materials, corrosion-resistant alloys, radiation-resistant alloys, hydrogen storage systems, and materials for biomedicine. Additionally, the review encompasses functional high-entropy materials outside the realm of alloys, including thermoelectric, quantum dots, nanooxide catalysts, energy storage materials, negative thermal expansion ceramics, and high-entropy wave absorption materials. The paper concludes with an outlook, discussing future directions and potential growth areas in the field. Through this comprehensive review, researchers, engineers, and scientists may gain valuable insights into the recent progress and opportunities for further exploration in the exciting domains of high-entropy alloys and functional materials.</p><h3>Graphic abstract</h3><div><figure><div><div><picture><source><img></source></picture></div></div></figure></div></div>","PeriodicalId":749,"journal":{"name":"Rare Metals","volume":"43 10","pages":"4639 - 4776"},"PeriodicalIF":9.6000,"publicationDate":"2024-08-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Frontiers in high entropy alloys and high entropy functional materials\",\"authors\":\"Wen-Tao Zhang, Xue-Qian Wang, Feng-Qi Zhang, Xiao-Ya Cui, Bing-Bing Fan, Jia-Ming Guo, Zhi-Min Guo, Rui Huang, Wen Huang, Xu-Bo Li, Meng-Ru Li, Yan Ma, Zhi-Hua Shen, Yong-Gang Sun, De-Zhuang Wang, Fei-Yang Wang, Li-Qiang Wang, Nan Wang, Tian-Li Wang, Wei Wang, Xiao-Yang Wang, Yi-Han Wang, Fu-Jie Yu, Yu-Zhen Yin, Ling-Kun Zhang, Yi Zhang, Jian-Yang Zhang, Qi Zhao, Yu-Ping Zhao, Xin-Dong Zhu, Yasir Sohail, Ya-Nan Chen, Tao Feng, Qi-Long Gao, Hai-Yan He, Yong-Jiang Huang, Zeng-Bao Jiao, Hua Ji, Yao Jiang, Qiang Li, Xiao-Ming Li, Wei-Bing Liao, Huai-Jun Lin, Hui Liu, Qi Liu, Qing-Feng Liu, Wei-Di Liu, Xiong-Jun Liu, Yang Lu, Yi-Ping Lu, Wen Ma, Xue-Fei Miao, Jie Pan, Qing Wang, Hong-Hui Wu, Yuan Wu, Tao Yang, Wei-Ming Yang, Qian Yu, Jin-Yu Zhang, Zhi-Gang Chen, Liang Mao, Yang Ren, Bao-Long Shen, Xun-Li Wang, Zhe Jia, He Zhu, Zhen-Duo Wu, Si Lan\",\"doi\":\"10.1007/s12598-024-02852-0\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Owing to their exceptional properties, high-entropy alloys (HEAs) and high-entropy materials have emerged as promising research areas and shown diverse applications. Here, the recent advances in the field are comprehensively reviewed, organized into five sections. The first section introduces the background of HEAs, covering their definition, significance, application prospects, basic properties, design principles, and microstructure. The subsequent section focuses on cutting-edge high-entropy structural materials, highlighting developments such as nanostructured alloys, grain boundary engineering, eutectic systems, cryogenic alloys, thin films, micro-nano-lattice structures, additive manufacturing, high entropy metallic glasses, nano-precipitate strengthened alloys, composition modulation, alloy fibers, and refractory systems. In the following section, the emphasis shifts to functional materials, exploring HEAs as catalysts, magneto-caloric materials, corrosion-resistant alloys, radiation-resistant alloys, hydrogen storage systems, and materials for biomedicine. Additionally, the review encompasses functional high-entropy materials outside the realm of alloys, including thermoelectric, quantum dots, nanooxide catalysts, energy storage materials, negative thermal expansion ceramics, and high-entropy wave absorption materials. The paper concludes with an outlook, discussing future directions and potential growth areas in the field. 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Frontiers in high entropy alloys and high entropy functional materials
Owing to their exceptional properties, high-entropy alloys (HEAs) and high-entropy materials have emerged as promising research areas and shown diverse applications. Here, the recent advances in the field are comprehensively reviewed, organized into five sections. The first section introduces the background of HEAs, covering their definition, significance, application prospects, basic properties, design principles, and microstructure. The subsequent section focuses on cutting-edge high-entropy structural materials, highlighting developments such as nanostructured alloys, grain boundary engineering, eutectic systems, cryogenic alloys, thin films, micro-nano-lattice structures, additive manufacturing, high entropy metallic glasses, nano-precipitate strengthened alloys, composition modulation, alloy fibers, and refractory systems. In the following section, the emphasis shifts to functional materials, exploring HEAs as catalysts, magneto-caloric materials, corrosion-resistant alloys, radiation-resistant alloys, hydrogen storage systems, and materials for biomedicine. Additionally, the review encompasses functional high-entropy materials outside the realm of alloys, including thermoelectric, quantum dots, nanooxide catalysts, energy storage materials, negative thermal expansion ceramics, and high-entropy wave absorption materials. The paper concludes with an outlook, discussing future directions and potential growth areas in the field. Through this comprehensive review, researchers, engineers, and scientists may gain valuable insights into the recent progress and opportunities for further exploration in the exciting domains of high-entropy alloys and functional materials.
期刊介绍:
Rare Metals is a monthly peer-reviewed journal published by the Nonferrous Metals Society of China. It serves as a platform for engineers and scientists to communicate and disseminate original research articles in the field of rare metals. The journal focuses on a wide range of topics including metallurgy, processing, and determination of rare metals. Additionally, it showcases the application of rare metals in advanced materials such as superconductors, semiconductors, composites, and ceramics.