Energy conversion materials need phonons  

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作  者:Dandan Ma Yuzhe Ma Jinfu Ma Qun Yang Claudia Felser Guowei Li 

机构地区:[1]Ningbo Institute of Materials Technology and Engineering,Chinese Academy of Sciences,Ningbo 315201,China [2]School of Materials Science and Engineering,North Minzu University,Yinchuan 750021,China [3]University of Chinese Academy of Sciences,19 A Yuquan Road,Shijingshan District,Beijing 100049,China [4]College of Letters and Science,University of California,Los Angeles,Los Angeles,CA 90095,USA [5]Max Planck Institute for Chemical Physics of Solids,01187 Dresden,Germany

出  处:《The Innovation》2024年第6期25-26,共2页创新(英文)

基  金:financially supported by the National Natural Science Foundation of China(52271194);the Ningbo Yongjiang Talent Introduction Programme(2022A-090-G);the Hundred Talents Programs in Chinese Academy of Science,the Natural Science Foundation of Ningxia Province(2022AAC02044);the European Research Council(742068“TOPMAT”);the International Sci-tech Cooperation Projects under the“Innovation Yongjiang 2035”Key R&D Programme,and the Max Planck Partner Group program.

摘  要:Phonons,as bosonic particles unaffected by the Pauli exclusion principle or the Fermi level,are fundamental to understanding the physical properties of solid materials.Their interactions with electrons and the crystal lattices significantly influence transport phenomena,such as electrical conductivity,mobility,and magneto-transport processes.

关 键 词:MATERIALS PROCESSES FERMI 

分 类 号:O42[理学—声学]

 

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