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APS -APS March Meeting 2017 - Event - Tailoring ion transport to improve thermoelectric properties of mixed polymer thermoelectrics

机译:APS -APS 2017年3月会议-活动-定制离子传输以改善混合聚合物热电材料的热电性能

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Polymer thermoelectrics show potential for simultaneously possessing high Seebeck coefficients and electrical conductivities by coupling electrochemical reactions at the electrodes with independent pathways for ion and electron transport. We show that by blending commercially-available PEDOT:PSS with a metal--polymer complex, the thermal diffusion of ions due to the Soret effect and the entropy of the electrochemical reactions can be leveraged to obtain Seebeck coefficients of O(10 mV/K). The transient behavior of the Seebeck coefficient in these systems can be systematically modified based on the nature of the ionic species. We describe the chemistry necessary to realize these phenomena in dry and ambient conditions and suggest future pathways to further optimize the figure of merit. These findings are an improvement over previous studies wherein such effects were demonstrated only in high-humidity environments, thus allowing us to perform detailed experimental analysis of the energy transport phenomena in such polymer thermoelectrics.
机译:聚合物热电势通过将电极上的电化学反应与离子和电子传输的独立途径耦合在一起,显示出同时具有高塞贝克系数和高电导率的潜力。我们表明,通过将市售的PEDOT:PSS与金属-聚合物配合物混合,由于Soret效应和电化学反应的熵引起的离子的热扩散可被利用来获得O(10 mV / K)的塞贝克系数)。这些系统中塞贝克系数的瞬态行为可以根据离子种类的性质进行系统地修改。我们描述了在干燥和环境条件下实现这些现象所必需的化学反应,并提出了进一步优化品质因数的未来途径。这些发现是对以前的研究的改进,在先前的研究中,仅在高湿度环境中证明了这种影响,因此使我们能够对这种聚合物热电学中的能量传输现象进行详细的实验分析。

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