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Synthesis and thermoelectric performance of titanium diboride and its composites with lead selenide and carbon

机译:二硼化钛的合成与热电性能及其硒化铅和碳的复合材料

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The exploration of new thermoelectric material is the current area of research in energy conversion and storage technologies, in that nanocomposite approach is a promising root to get desirable thermoelectric properties. The present study demonstrates a composite containing highly conductive titanium diboride (TiB2), polyvinyl alcohol (PVA) as binder and lead selenide (PbSe) as semiconductor. The synthesis and transport physics are studied with an intention to increase the power factor and figure of merit (ZT) of TiB2 by reducing thermal conductivity through creating inhomogeneity in microstructures. Sol gel method and carbothermal reduction reaction have been used to synthesize TiB2. More than 95% of thermal conductivity is reduced due to the phonon scattering, which is desirable to achieve a high power factor and ZT. TiB2/PVA composite possesses a very low Seebeck coefficient and exhibits three order of magnitude reduction in electrical conductivity, which hinders in achieving a good power factor and ZT. Power factor of 25.3 mu W/mK(2), Seebeck coefficient of 36.3 V/K at 550 K and electrical conductivity of 2.5 x 10(4) S/m at similar to 300 K and ZT of 0.064 at 550 K are worth to report in this study. Finally, the synthesized TiB2 is incorporated into PbSe to evaluate thermoelectric properties. Maximum ZT of 0.12 at 495 K, Seebeck coefficient of 342 mu V/K at 550 K, electrical conductivity of 2.8 x 10(3) S/m at 400 K, thermal conductivity of 1.03 W/mK at 550 K and highest power factor of 280.2 mu W/mK(2) at 495 K have been achieved in this composite.
机译:新的热电材料的探索是能量转换和储存技术的当前研究领域,因为纳米复合材料是一种有望的根本来获得理想的热电性能。本研究证明了含有高导电钛的二硼(TIB2),聚乙烯醇(PVA)作为粘合剂和硒化硒(PBSE)作为半导体的复合材料。研究了合成和运输物理学,通过在微观结构中产生不均匀性来降低导热率来增加TIB2的功率因数和功率(ZT)的功率因数和图谱。溶胶凝胶法和碳热还原反应已用于合成TIB2。由于声子散射,超过95%的导热率降低,这是期望实现高功率因数和ZT的优选。 TIB2 / PVA复合材料具有非常低的Seebeck系数,并且在导电性降低三个级别下降,这使得能够实现良好的功率因数和ZT。 25.3μmk(2)的功率因数,550 k的塞贝克系数为36.3V / k,导电率为2.5×10(4)S / m,类似于300 k和0.064的Zt为550 k值得本研究报告。最后,合成的TIB2掺入PBSE中以评估热电性质。最大Zt为0.12,495 k,塞贝克系数为342μmV/ k,550 k,电导率为400 k,导热率为1.03w / mk,550 k和最高功率因数在该复合材料中实现了280.2μmk(2)在495 k下实现。

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