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优化导电聚合物聚(3,4-乙二氧基噻吩)的热电优值。

Optimization of the thermoelectric figure of merit in the conducting polymer poly(3,4-ethylenedioxythiophene).

机构信息

Organic Electronics, Department of Science and Technology,Campus Norrköping, Linköping University, SE-60174 Norrköping, Sweden.

出版信息

Nat Mater. 2011 Jun;10(6):429-33. doi: 10.1038/nmat3012. Epub 2011 May 1.

Abstract

Thermoelectric generators (TEGs) transform a heat flow into electricity. Thermoelectric materials are being investigated for electricity production from waste heat (co-generation) and natural heat sources. For temperatures below 200 °C, the best commercially available inorganic semiconductors are bismuth telluride (Bi(2)Te(3))-based alloys, which possess a figure of merit ZT close to one. Most of the recently discovered thermoelectric materials with ZT>2 exhibit one common property, namely their low lattice thermal conductivities. Nevertheless, a high ZT value is not enough to create a viable technology platform for energy harvesting. To generate electricity from large volumes of warm fluids, heat exchangers must be functionalized with TEGs. This requires thermoelectric materials that are readily synthesized, air stable, environmentally friendly and solution processable to create patterns on large areas. Here we show that conducting polymers might be capable of meeting these demands. The accurate control of the oxidation level in poly(3,4-ethylenedioxythiophene) (PEDOT) combined with its low intrinsic thermal conductivity (λ=0.37 W m(-1) K(-1)) yields a ZT=0.25 at room temperature that approaches the values required for efficient devices.

摘要

热电发生器(TEG)将热能转化为电能。热电材料正被研究用于从余热(联产)和自然热源中发电。对于低于 200°C 的温度,最好的商业可用无机半导体是基于铋碲化物(Bi(2)Te(3))的合金,其具有接近 1 的品质因数 ZT。最近发现的大多数具有 ZT>2 的热电材料具有一个共同的特性,即它们的晶格热导率较低。然而,高 ZT 值不足以创建可行的能量收集技术平台。为了从大量的温暖流体中发电,必须用 TEG 对热交换器进行功能化。这需要易于合成、空气稳定、环保且可溶液处理以在大面积上形成图案的热电材料。在这里,我们表明导电聚合物可能能够满足这些需求。聚(3,4-乙撑二氧噻吩)(PEDOT)中氧化水平的精确控制,结合其较低的固有热导率(λ=0.37 W m(-1) K(-1)),在室温下产生 0.25 的 ZT 值,接近高效器件所需的值。

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