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首页> 外文期刊>ACS nano >Photothermally Activated Pyro electric Polymer Films for Harvesting of Solar Heat with a Hybrid Energy Cell Structure
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Photothermally Activated Pyro electric Polymer Films for Harvesting of Solar Heat with a Hybrid Energy Cell Structure

机译:具有混合能量电池结构的光热活化热释电聚合物薄膜,用于收集太阳热

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摘要

Photothermal effects in poly(3,4-ethylenedimthiophene)s (PEDOTs) were explored for pyroelectric conversion. A poled ferroelectric film was coated on both sides with PEDOT via solution casting polymerization of EDOT, to give highly conductive and effective photothermal thin films of PEDOT. The PEDOT films not only provided heat source upon light exposure but worked as electrodes for the output energy from the pyroelectric layer in an energy harvester hybridized with a thermoelectric layer. Compared to a bare thermoelectric system under NIR irradiation, the photothermal-pyro-thermoelectric device showed more than 6 times higher thermoelectric output with the additional pyroelectric output. The photothermally driven pyroelectric harvesting film provided a very fast electric output with a high voltage output (V-out) of 15 V. The pyroelectric effect was significant due to the transparent and high photothermal PEDOT film, which could also work as an electrode. A hybrid energy harvester was assembled to enhance photoconversion efficiency (PCE) of a solar cell with a thermoelectric device operated by the photothermally generated heat. The PCE was increased more than 20% under sunlight irradiation (AM 1.5G) utilizing the transmitted light through the photovoltaic cell as a heat source that was converted into pyroelectric and thermoelectric output simultaneously from the high photothermal PEDOT electrodes. Overall, this work provides a dynamic and static hybrid energy cell to harvest solar energy in full spectral range and thermal energy, to allow solar powered switching of an electrochromic display.
机译:探索了聚(3,4-乙撑二噻吩)(PEDOTs)中的光热效应以进行热电转换。通过EDOT的溶液流延聚合法在两面极化铁电薄膜上涂上PEDOT,得到高导电性和有效的PEDOT光热薄膜。 PEDOT膜不仅在曝光时提供热源,而且还用作与热电层混合的能量收集器中热电层输出能量的电极。与NIR辐射下的裸露热电系统相比,光热热释热电器件的热电输出高出6倍以上,并具有额外的热电输出。光热驱动的热电收集膜可提供非常快的电输出,且高压输出(V-out)为15V。由于透明且高光热的PEDOT膜也可以用作电极,因此热电效果显着。组装了混合能量收集器,以增强具有通过光热产生的热量运行的热电装置的太阳能电池的光转换效率(PCE)。利用通过光伏电池的透射光作为热源,在日光照射(AM 1.5G)下,PCE增加了20%以上,同时从高光热PEDOT电极转换为热电和热电输出。总的来说,这项工作提供了一个动态和静态的混合能源电池,可以收集全光谱范围内的太阳能和热能,从而实现电致变色显示器的太阳能开关。

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