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首页> 外文期刊>Journal of Electronic Materials >Organic-Inorganic Nanohybrids as Novel Thermoelectric Materials: Hybrids of Polyaniline and Bismuth(III) Telluride Nanoparticles
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Organic-Inorganic Nanohybrids as Novel Thermoelectric Materials: Hybrids of Polyaniline and Bismuth(III) Telluride Nanoparticles

机译:有机-无机纳米杂化物作为新型热电材料:聚苯胺和碲化铋(III)纳米粒子的混合物

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摘要

Thermoelectric materials have received much attention recently from the viewpoint of global environmental issues and effective utilization of energy resources. Especially those effective at relatively low temperature, such as below 100 deg C, which are usually abandoned without use, have become note-worthy recently. From this point of view, organic thermoelectric materials are most attractive, because they could be prepared at low cost and applied in various locations due to their flexibility. We have investigated the thermoelectric properties of organic conducting polymers such as polyaniline, polypyrrole, and polyphenylenevinylene, and succeeded in increasing the thermoelectric performance by selecting dopants, stretching conducting films, etc. Recently we have focused on new systems of organic-inorganic hybrid thermoelectric materials. Herein we present the preparation of a novel system of hybrids of polyaniline and bismuth(III) telluride nanoparticles, starting from bismuth(III) chloride and tetrachlorotellurium by using polyvinylpyrrolidone as a protecting reagent, as well as their thermoelectric properties. The hybrids prepared by this particular method showed much higher thermoelectric performance than the starting organic conducting polymer.
机译:从全球环境问题和能源资源的有效利用的观点来看,热电材料近来受到了广泛的关注。尤其是那些通常在不使用的情况下废弃的,在相对较低的温度(例如低于100摄氏度)下有效的材料,最近变得值得注意。从这一观点出发,有机热电材料是最有吸引力的,因为它们可以以低成本制备并且由于其柔韧性而可以应用在各个地方。我们已经研究了聚苯胺,聚吡咯和聚苯撑乙烯等有机导电聚合物的热电性能,并通过选择掺杂剂,拉伸导电膜等成功提高了热电性能。最近,我们致力于新的有机-无机混合热电材料系统。本文中,我们介绍了使用聚乙烯吡咯烷酮作为保护剂,从氯化铋(III)和四氯碲开始,制备聚苯胺和碲化铋(III)纳米粒子杂化物的新型系统,以及它们的热电性能。通过这种特定方法制备的杂化物显示出比起始有机导电聚合物高得多的热电性能。

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