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作 者:Yutao Cui Jie Yan Yue Sun Ye Zou Yimeng Sun Wei Xu Daoben Zhu
机构地区:[1]Beijing National Laboratory for Molecular Sciences,Key Laboratory of Organic Solids,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100190,China [2]University of Chinese Academy of Sciences,Beijing 100049,China
出 处:《Science Bulletin》2018年第13期814-816,共3页科学通报(英文版)
基 金:supported by the National Basic Research Program of China(2013CB632506);the Strategic Priority Research Program of the Chinese Academy of Sciences(XDB12000000);the National Natural Science Foundation of China(21333011);Chinese Academy of Sciences(QYZDY-SSW-SLH024)
摘 要:Thermoelectric(TE)materials can realize mutual energy conversion between heat and electricity and are applied broadly in energy harvesting,local cooling or heating,and thermal sensing[1].TE devices are crucial to solve the global energy crisis with renewable energy resources.Currently,most of the research works are focused on inorganic TE materials because of their superior performance.Very recently,due to the growing demandsThermoelectric (TE) materials can realize mutual energy conversion between heat and electricity and are applied broadly in energy harvesting, local cooling or heating, and thermal sensing . TE devices are crucial to solve the global energy crisis with renewable energy resources. Currently, most of the research works are focused on inorganic TE materials because of their superior performance. Very recently, due to the growing demands on energy supply units for self-powered wearable electronic devices, there are growing interests on TE materials based on organic materials.
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