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Effect of dispersion of nanosize silica fine powder on the thermoelectric properties of cobalt-doped beta-iron disilicide

机译:纳米二氧化硅细粉的分散对钴掺杂β-二硅化铁热电性能的影响

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The reduction of thermal conductivity of beta-iron disilicide is the key to realize thermoelectric power generation based on the material. Nanosize silica powder with the average diameter of 310 nm was dispersed in beta-iron disilicide doped with 5% cobalt. Iron disilicide and fine silica powder were mixed by ball-milling, then hot-pressed at 1100/spl deg/C, followed with post-sintering heat treatment at 848/spl deg/C for 20 h. The temperature dependencies of the physical properties such as the Seebeck coefficient, electrical conductivity, thermal conductivity were evaluated in the temperature range of 40-600/spl deg/C. The thermal conductivity decreased significantly by the fine silica dispersion. Although the electric conductivity also decreased, the thermoelectric figure of merit was improved by the decreased thermal conductivity and increased thermoelectric power.
机译:β-铁二硅化物的导热率的降低是实现基于材料的热电发电的关键。将平均直径为310nm的纳米二氧化硅粉末分散在掺杂5%钴的β-铁二硅氧二硅氧二能下。通过球磨机混合二硅化铁和细二氧化硅粉末,然后在1100 / SPL DEG / C处热压,然后在848 / SPL DEG / C的后烧结热处理20小时。在40-600 / SPL DEG / C的温度范围内评估物理性质的温度依赖性,例如塞贝克系数,导电性导热率,导热率。通过细二氧化硅分散体显着降低导热率。尽管电导率也降低,但是通过降低的导热性和热电动力提高了优异的热电值。

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