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Preparation of γ‐LaSy (1.33≪y≪1.50) alloys by the pressure‐assisted reaction sintering method and their thermoelectric properties

机译:压力辅助反应烧结法制备γ-LaSy(1.33≪y≪1.50)合金及其热电性能

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The pressure‐assisted reaction sintering (PARS) method was used to prepare thermoelectric elements of the γ‐phase lanthanum sesquisulfide solid solution alloys which exist over a wide homogeneity range: LaSy (1.33≪y≪1.5). A mixture of powders of stoichiometric lanthanum sesquisulfide (La2S3) and lanthanum trihydride (LaH3) was reaction sintered in a hot‐press to make the desired composition of γ‐LaSy. This method produced black dense single‐phase γ‐LaSy pellets with a theoretical density of 97% or better. The thermoelectric properties (electrical resistivity and Seebeck coefficient) of the samples prepared by the PARS technique were measured. The room temperature electrical resistivity and Seebeck coefficient of γ‐LaSy varied in a systematic manner with the electron concentration indicating that γ‐LaSy alloys behave like a simple metal. Although the current carriers appear to be quite heavy (drift mobility ∼3 cm2/V s), the temperature dependence (up to 1000 °C) of these properties of LaS1.42 were found to be linear functions, which is in accord with the above observations. The thermoelectric figure of merit based on the measured resistivity and Seebeck coefficient and an estimated thermal conductivity for LaS1.42 is 0.75×10-3 °C-1 at 1000 °C, which is comparable to those of the state‐of‐the‐art materials such as silicon–germanium alloys at 1000 °C.
机译:用压力辅助反应烧结(PARS)法制备了γ相Lasy(1.33≪y≪1.5)均质合金。将化学计量的倍半硫化镧(La2S3)和三氢化镧(LaH3)的混合物在热压机中反应烧结,制成所需的γ-LaSy组成。该方法可生产理论密度为97%或更高的黑色致密单相γ-LaSy颗粒。测量了通过PARS技术制备的样品的热电性质(电阻率和塞贝克系数)。 γ-LaSy的室温电阻率和塞贝克系数以系统的方式变化,电子浓度表明,γ-LaSy合金的行为类似于简单的金属。尽管当前载流子似乎很重(漂移迁移率约为3 cm2 / V s),但发现LaS1.42这些特性的温度依赖性(高达1000(C)是线性函数,与以上观察。基于测得的电阻率和塞贝克系数以及LaS1.42的估计热导率的热电品质因数在1000°C下为0.75×10-3°C-1,与该状态相当硅锗合金等艺术材料,温度为1000C。

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    《Journal of Applied Physics》 |1985年第10期|P.4633-4637|共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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