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Micro thermoelectric devices:From principles to innovative applications

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【作者】 刘求林李国栋朱航天赵怀周

【Author】 Qiulin Liu;Guodong Li;Hangtian Zhu;Huaizhou Zhao;Beijing National Laboratory for Condensed Matter Physics and Institute of Physics,Chinese Academy of Sciences;School of Physical Sciences,University of Chinese Academy of Sciences;Songshan Lake Materials Laboratory;

【通讯作者】 李国栋;赵怀周;

【机构】 Beijing National Laboratory for Condensed Matter Physics and Institute of Physics,Chinese Academy of SciencesSchool of Physical Sciences,University of Chinese Academy of SciencesSongshan Lake Materials Laboratory

【摘要】 Thermoelectric devices(TEDs),including thermoelectric generators(TEGs) and thermoelectric coolers(TECs) based on the Seebeck and Peltier effects,respectively,are capable of converting heat directly into electricity and vice versa.Tough suffering from low energy conversion efficiency and relatively high capital cost,TEDs have found niche applications,such as the remote power source for spacecraft,solid-state refrigerators,waste heat recycling,and so on.In particular,onchip integrable micro thermoelectric devices(μ-TEDs),which can realize local thermal management,on-site temperature sensing,and energy harvesting under minor temperature gradient,could play an important role in biological sensing and cell cultivation,self-powered Internet of Things(IoT),and wearable electronics.In this review,starting from the basic principles of thermoelectric devices,we summarize the most critical parameters for μ-TEDs,design guidelines,and most recent advances in the fabrication process.In addition,some innovative applications of μ-TEDs,such as in combination with microfluidics and photonics,are demonstrated in detail.

【Abstract】 Thermoelectric devices(TEDs),including thermoelectric generators(TEGs) and thermoelectric coolers(TECs) based on the Seebeck and Peltier effects,respectively,are capable of converting heat directly into electricity and vice versa.Tough suffering from low energy conversion efficiency and relatively high capital cost,TEDs have found niche applications,such as the remote power source for spacecraft,solid-state refrigerators,waste heat recycling,and so on.In particular,onchip integrable micro thermoelectric devices(μ-TEDs),which can realize local thermal management,on-site temperature sensing,and energy harvesting under minor temperature gradient,could play an important role in biological sensing and cell cultivation,self-powered Internet of Things(IoT),and wearable electronics.In this review,starting from the basic principles of thermoelectric devices,we summarize the most critical parameters for μ-TEDs,design guidelines,and most recent advances in the fabrication process.In addition,some innovative applications of μ-TEDs,such as in combination with microfluidics and photonics,are demonstrated in detail.

【基金】 funding support of the National Key Research and Development Program of China (Grant No.2018YFA0702100);the National Natural Science Foundation of China (Grant No.52172259)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年04期
  • 【分类号】TM913
  • 【下载频次】17
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