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首页> 外文期刊>Journal of nanoscience and nanotechnology >Preparation and Characterization of P-Type and N-Type Doped Expanded Graphite Polymer Composites for Thermoelectric Applications
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Preparation and Characterization of P-Type and N-Type Doped Expanded Graphite Polymer Composites for Thermoelectric Applications

机译:热电应用P型和N型掺杂膨胀石墨聚合物复合材料的制备与表征

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摘要

In this work, we demonstrate that expanded graphite can be sufficiently dispersed in polymer solution to form suspensions. Thin composite films were prepared by casting and drying the suspensions. The thermoelectric properties of expanded graphite (ExG)-polymer composites were easily modified by chemical doping. Electrically and thermally insulating polymers of PC, PS, and PMMA served as matrix materials. ExG composite films in PC, PMMA, and PS were prepared using thionyl chloride as the p-type dopant and PEI as the n-type dopant. By comparing the electrical conductivity and Seebeck coefficient values of the composite films, we observed that use of an electron acceptor material (thionyl chloride) in composites enhanced electrical conductivity and reduced the value of the positive Seebeck coefficient, which are p-type doping effects. In contrast, when the donor material PEI was used, there was an increase in electrical conductivity and changes in the value and sign of the Seebeck coefficient from positive to negative, confirming n-type doping.
机译:在这项工作中,我们证明了膨胀石墨可以充分分散在聚合物溶液中以形成悬浮液。通过流延和干燥悬浮液来制备复合薄膜。易膨胀石墨(ExG)-聚合物复合材料的热电性能易于通过化学掺杂进行改性。 PC,PS和PMMA的电绝缘和热绝缘聚合物用作基质材料。使用亚硫酰氯作为p型掺杂剂和PEI作为n型掺杂剂制备PC,PMMA和PS中的ExG复合膜。通过比较复合膜的电导率和塞贝克系数值,我们观察到在复合物中使用电子受体材料(亚硫酰氯)可以提高电导率,并减小正塞贝克系数的值,这是p型掺杂效应。相反,当使用施主材料PEI时,电导率增加并且塞贝克系数的值和符号从正变到负,从而证实了n型掺杂。

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