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首页> 外文期刊>Synthetic Metals >Hybrid solar cells based on dye-sensitized nanoporous TiO_2 electrodes and conjugated polymers as hole transport materials
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Hybrid solar cells based on dye-sensitized nanoporous TiO_2 electrodes and conjugated polymers as hole transport materials

机译:基于染料敏化的纳米多孔TiO_2电极和共轭聚合物作为空穴传输材料的混合太阳能电池

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摘要

Solid state dye-sensitized photovoltaic solar cells were fabricated using a three-layer concept. The hybrid devices consist of a transparent inorganic nanocrystalline titanium dioxide (nc-TiO_2) layer with a thickness of 2 #mu#m as electron acceptor and for electron transport. A surface-adsorbed RuL2(NCS)2:2 TBA dye complex (where L = 2,2'-bipyridyl-4,4'-dicarboxylic acid; TBA = tetrabutylammonium) is utilized for light absorption and electron injection to the conduction band of TiO_2. For the transport of holes to the back contact electrode conjugated polymers are used, either a poly(3-octylthiophene) (P3OT), or a low band-gap thiophene-isothianaphthene-based copolymer (PDTI). These devices exhibit an overall energy conversion efficiency of approximately 0.16 percent under simulated solar irradiation (80 mW/cm~2). Furthermore, we have investigated the surface network morphology of these film layers by atomic microscope (AFM) exploring strategies to improve the efficiency.
机译:使用三层概念制造了固态染料敏化光伏太阳能电池。混合器件由厚度为2#μm的透明无机纳米晶体二氧化钛(nc-TiO_2)层作为电子受体并用于电子传输。表面吸附的RuL2(NCS)2:2 TBA染料配合物(其中L = 2,2'-联吡啶-4,4'-二羧酸; TBA =四丁基铵)用于光吸收和电子注入到B的导带TiO_2。为了将空穴传输到背接触电极,使用了聚(3-辛基噻吩)(P3OT)或低带隙噻吩-异噻吩基的共聚物(PDTI)共轭聚合物。这些设备在模拟太阳辐射(80 mW / cm〜2)下表现出大约0.16%的总能量转换效率。此外,我们已经通过原子显微镜(AFM)探索策略研究了这些薄膜层的表面网络形态,以提高效率。

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