Engineering of copper sulfide-based nanomaterials for thermoelectric application

被引:0
作者
Binqi He
Kai Zhang
Maiyong Zhu
机构
[1] SchoolofMaterialsScience&Engineering,JiangsuUniversity
关键词
D O I
暂无
中图分类号
TB383.1 []; TQ131.21 [];
学科分类号
070205 ; 080501 ; 1406 ; 0817 ;
摘要
In the context of diminishing energy resources and worsening greenhouse effect, thermoelectric materials have great potential for sustainable development due to their green and environmentally friendly characteristics. Among inorganic thermoelectric materials, copper sulfide compounds have greater potential than others due to their abundant element reserves on Earth, lower usage costs, non-toxicity, and good biocompatibility. Compared to organic thermoelectric materials, the "phonon liquid-electron crystal"(PLEC) feature of copper sulfide compounds makes them have stronger thermoelectric performance. This review summarizes the latest research progress in the synthesis methods and thermoelectric modification strategies of copper sulfide compounds. It first explains the importance of the solid-phase method in the manufacture of thermoelectric devices, and then focuses on the great potential of nanoscale synthesis technology based on liquid-phase method in the preparation of thermoelectric materials. Finally, it systematically discusses several strategies for regulating the thermoelectric performance of copper sulfide compounds, including adjusting the chemical proportion of Cu2-xS and introducing element doping to regulate the crystal structure, phase composition, chemical composition, band structure, and nanoscale microstructure of copper sulfide compounds, and directly affecting ZT value by adjusting conductivity and thermal conductivity. In addition, it discusses composite engineering based on copper sulfide compounds, including inorganic, organic, and metal compounds, and discusses tri-component compounds derived from sulfide copper. Finally, it discusses the main challenges and prospects of the development of copper sulfide-based thermoelectric materials, hoping that this review will promote the development of copper sulfide-based thermoelectric materials.
引用
收藏
页码:619 / 688
页数:70
相关论文
共 186 条
[11]  
Multiscale architectures boosting thermoelectric performance of copper sulfide compound.[J].Xin-Qi Chen;Sheng-Jie Fan;Chao Han;Tian Wu;Lian-Jun Wang;Wan Jiang;Wei Dai;Jian-Ping Yang;.Rare Metals.2021, 08
[12]   聚吡咯/聚苯胺二元复合纳米管及其热电性能 [J].
王乙涵 ;
尹强 ;
杜凯 ;
殷勤俭 .
高等学校化学学报, 2020, 41 (01) :175-182
[13]   EnhancedThermoelectricandMechanicalPropertiesofn-typeBi2Te2.7Se0.3BulkAlloysbyElectrolessPlatingwithCu [J].
代雪婷 ;
HUANG Zhongyue ;
ZU Fangqiu .
Journal of Wuhan University of Technology(Materials Science), 2019, 34 (04) :840-844
[14]   柔性热电器件的制备与性能研究 [J].
曲大伟 ;
李昕 ;
陈光明 .
高等学校化学学报, 2019, 40 (04) :617-623
[15]  
Improved electrical transport properties and optimized thermoelectric figure of merit in lithium-doped copper sulfides.[J].Meng-Jia Guan;Peng-Fei Qiu;Qing-Feng Song;Jiong Yang;Du-Di Ren;Xun Shi;Li-Dong Chen;.Rare Metals.2018, 04
[16]   ThermoelectricPropertiesofN-typerBi2Te3-PbTeGradedThermoelectricMaterialswithDifferentBarriers [J].
Guiying Xu Changchun Ge Yanping Gao Weiping Shen Laboratory of Special Ceramics and Powder Metallurgy University of Science and Technology Beijing Beijing China .
Journal of University of Science and Technology Beijing(English Edition), 2001, (04) :267-269
[17]   Precious metal nanoparticles dispersing toward highly enhanced mechanical and thermoelectric properties of copper sulfides [J].
Zhang, Yi-Xin ;
Zhu, Yu-Ke ;
Feng, Jing ;
Ge, Zhen-Hua .
JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 892
[18]   Research on Module Layout and Module Coverage of an Automobile Exhaust Thermoelectric Power Generation System [J].
Zhou, Weiqi ;
Yang, Jiasheng ;
Qin, Qing ;
Zhu, Jiahao ;
Xu, Shiyu ;
Luo, Ding ;
Wang, Ruochen .
ENERGIES, 2022, 15 (03)
[19]   Effects of Preparation Procedures and Porosity on Thermoelectric Bulk Samples of Cu2SnS3 (CTS) [J].
Lohani, Ketan ;
Fanciulli, Carlo ;
Scardi, Paolo .
MATERIALS, 2022, 15 (03)
[20]   Cu2S/Ni3S2 ultrathin nanosheets on Ni foam as a highly efficient electrocatalyst for oxygen evolution reaction [J].
Tang, Mengyi ;
Liu, Yu ;
Cao, Heng ;
Zheng, Qiaoji ;
Wei, Xijun ;
Lam, Kwok Ho ;
Lin, Dunmin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (05) :3013-3021