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Thermoelectric properties of polycrystalline Zn4Sb3 samples prepared by solid state reaction method

机译:固相反应法制备多晶Zn4Sb3样品的热电性能

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摘要

Seebeck coefficient S(T), electrical resistivity rho(T) and thermal conductivity kappa(T) measurements on polycrystalline Zn4Sb3 compounds grown by solid state reaction method are presented; these transport properties were studied in the temperature range between 100 and 290K. The Seebeck coefficient is positive over the measured temperature range and its magnitude increases with both temperature and the processing time up to reach values close to 240 mu V/K. The electrical resistivity shows a weak semiconducting behavior. its magnitude increases with the processing time to reach values around 10 m Omega cm in the sample annealed during 5 h, then rho(T) decreases up to 0.5 m Omega cm. The thermal conductivity shows a linear temperature behavior, at room temperature, it reaches minimum values close to 0.5 W/K m. From rho(T), S(T) and kappa(T) data, it was possible to determine the thermoelectric power factor, PF and the dimensionless figure of merit ZT, which reach maximum values close to 14 mu W/K-2 cm and 0.2, respectively. The behavior of studied transport properties shows that these Zn4Sb3 compounds can be prepared by using the solid state reaction method, which could allow to obtain proper samples to be used in technological thermoelectric applications.
机译:给出了通过固态反应法生长的多晶Zn4Sb3化合物的塞贝克系数S(T),电阻率rho(T)和热导率κ(T)的测量结果;在100至290K的温度范围内研究了这些传输特性。塞贝克系数在测得的温度范围内为正,并且其幅度随温度和处理时间的增加而增加,直至达到接近240μV / K的值。电阻率显示出弱的半导体行为。它的强度随处理时间的增加而增加,达到5 h退火样品中约10 m Omega cm的值,然后rho(T)降低至0.5 m Omega cm。导热率在室温下表现出线性温度行为,达到接近0.5 W / K m的最小值。根据rho(T),S(T)和kappa(T)数据,可以确定热电功率因数PF和无因次品质因数ZT,其最大值接近14μW / K-2 cm和0.2。所研究的传输性质的行为表明,这些Zn4Sb3化合物可通过使用固态反应方法制备,这可允许获得用于技术热电应用的合适样品。

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