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An enhanced power factor via multilayer growth of Ag-doped skutterudite CoSb_(3)thin films
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作者 Zhuang-Hao Zheng Meng Wei +7 位作者 Jing-Ting Luo Fu Li Guang-Xing Liang Yan Liang Jin Hao Hong-Li Ma Xiang-Hua Zhang Ping Fan 《Inorganic Chemistry Frontiers》 2018年第6期1409-1414,共6页
Skutterudite CoSb_(3)has emerged as one of the most studied candidate materials for thermoelectric applications.In this work,the multilayer inter-diffusion method for depositing Ag-doped CoSb_(3)thin films was used to... Skutterudite CoSb_(3)has emerged as one of the most studied candidate materials for thermoelectric applications.In this work,the multilayer inter-diffusion method for depositing Ag-doped CoSb_(3)thin films was used to improve its thermoelectric property.A microstructure study demonstrates that Ag enters into the lattice.By using first-principles calculations,it can be concluded that the Ag atoms will preferentially occupy the lattice voids,rather than substitute Sb or Co rings,leading to better thermoelectric performance.As expected,the increase of both Seebeck coefficient and electric conductivity is obtained after Ag doping through the multilayer diffusion method,indicating that this approach can resolve the conflict between these often-contractive thermoelectric factors.Due to this efficient combined action,the power factor has substantially been enhanced and the maximum value reaches 0.11 mW m^(−1)K^(−2)at 573 K,which is five times higher than that of the un-doped sample. 展开更多
关键词 Ag doped Seebeck coefficient First principles calculations thermoelectric propertya multilayer growth Skutterudite microstructure study Cosb
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