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首页> 外文期刊>RSC Advances >Environmentally friendly BaxSr2-xTiFeO6 double perovskite with enhanced thermopower for high temperature thermoelectric power generation
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Environmentally friendly BaxSr2-xTiFeO6 double perovskite with enhanced thermopower for high temperature thermoelectric power generation

机译:环保BAXSR2-XTIFEO6双钙钛矿,具有增强的热电驱动器,用于高温热电发电

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In the present work, the prospects of environmental friendly BaxSr2-xTiFeO6 complex double perovskites have been evaluated for applications as high temperature thermoelectric materials with properties converging to the 'phonon-glass electron-crystal' model. BaxSr2-xTiFeO6 compositions with 0.0 <= x <= 0.25 were synthesized by a solid-state reaction method. The oxide samples were then investigated for their crystal structure (single phase) and morphology by XRD and SEM, respectively. Thermo-power or Seebeck coefficient (S) and the electrical conductivity (sigma) of these oxide samples were simultaneously measured to calculate the thermoelectric power factor (S-2 sigma). All the BaxSr2-xTiFeO6 compositions showed p-type non-degenerate semiconductor behavior before semiconductor to metal transition occurred as evident from the temperature dependent Seebeck coefficient of these double perovskites. Conduction mechanisms of these oxides were analyzed using variable range hopping and small polaron hopping conduction models. All these double perovskites exhibited more than 100 mu V K-1 thermopower in the wide range of temperature from 300 K to 1223 K. A very high thermo-power (S) value (similar to 800 mu V K-1) was obtained for BaxSr2-xFeTiO6 with x - 0.25 at 1123 K.
机译:在目前的工作中,已经评估了环保Baxsr2-Xtifeo6复杂双钙钛矿的前景,以适用于具有融合到“声子玻璃电子晶”模型的性能的高温热电材料。通过固态反应方法合成具有0.0 <= x <= 0.25的Baxsr2-XtifeO6组合物。然后通过XRD和SEM分别研究氧化物样品以分别通过XRD和SEM进行晶体结构(单相)和形态。同时测量热功率或塞贝克系数和这些氧化物样品的电导率(Sigma)以计算热电功率因数(S-2 Sigma)。所有BAXSR2-XTIFEO6组合物在半导体到金属转换之前显示了P型非退化半导体行为,从这些双钙钛矿的温度依赖性塞贝克系数明显发生。使用可变范围跳跃和小极化型跳跃传导模型分析了这些氧化物的传导机制。所有这些双重钙质均在300k至1223k的宽范围内显示出超过100μmVk-1热电机。获得非常高的热功率(类似于800μmVk-1) BAXSR2-XFETIO6具有X-0.25,1123 K.

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  • 来源
    《RSC Advances 》 |2016年第60期| 共8页
  • 作者单位

    Indian Inst Technol Dept Mat Sci &

    Engn Plasmon &

    Perovskites Lab Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Dept Mat Sci &

    Engn Plasmon &

    Perovskites Lab Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Dept Mat Sci &

    Engn Plasmon &

    Perovskites Lab Kanpur 208016 Uttar Pradesh India;

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  • 正文语种 eng
  • 中图分类 化学 ;
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