首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Photothermally powered conductive films for absorber-free solar thermoelectric harvesting
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Photothermally powered conductive films for absorber-free solar thermoelectric harvesting

机译:用于无吸收太阳能热电收集的光热动力导电膜

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摘要

The photothermoelectric (PTE) effect in conductive polymers is significant because it combines high photothermal (PT) and thermoelectric (TE) effects. Using poly(3,4-ethylenedioxythiophene) (PEDOT) films with various conductivities and crystallinities, the PTE effect in thin films can be established. The PT temperature increase (Delta T-PT) under light exposure and the thermal voltage induced by Delta T-PT for a series of PEDOT films indicated an unparalleled sensitivity to the carrier mobility in PT and TE conversions. The PTE Seebeck coefficients (S-PTE) and power factors (PFPTE) for the PEDOT films correlated well with those in the dark state, indicating that the PTE effect in PEDOT can be translated into the TE effect induced by heating upon light exposure. The 180 nm-thick pristine PEDOT film shows high PFPTE values of 620 and 590 mu W m(-1) K-2 for a near-infrared laser and sunlight, respectively. The thin-film solar TE harvester with four PEDOT legs generates a power density of 38 mW m(-2) and an energy density of 420 W h g(-1), demonstrating the first and highest absorber-free organic solar TE output yet reported. Thus, the PT conversion mechanisms in CP films can be extended to thin-film solar energy harvesters.
机译:导电聚合物中的光热电(PTE)效应是显着的,因为它结合了高光热(PT)和热电(TE)效应。使用具有各种导电性和晶体的聚(3,4-亚乙基氧基噻吩)(PEDOT)膜,可以建立薄膜中的PTE效果。 PT升温(Delta T-Pt)在轻曝光和ΔT-Pt诱导的用于一系列染色膜的热电压表示对PT和TE转换中的载流子迁移率的无与伦比的敏感性。 PTE Seebeck系数(S-PTE)和佩特膜的电源因子(PFPTE)与黑暗状态的那些相处良好,表明铅皮中的PTE效应可以转换为通过在光曝光时加热引起的TE效应。 180nm厚的原始佩特膜分别显示出近红外激光和阳光的高pfpte值620和590μm(-1)k-2。具有四个踏板腿的薄膜太阳能TE收割机产生38 mW mW(-2)的功率密度,并且能量密度为420W hg(-1),展示了第一和最高吸收的有机太阳能TE输出报道。因此,CP膜中的PT转换机制可以扩展到薄膜太阳能收割机。

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