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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Surface Modification of ZnO Nanorods with Small Organic Molecular Dyes for Polymer-Inorganic Hybrid Solar Cells
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Surface Modification of ZnO Nanorods with Small Organic Molecular Dyes for Polymer-Inorganic Hybrid Solar Cells

机译:聚合物-无机杂化太阳能电池用有机小分子氧化锌纳米棒的表面修饰

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摘要

ZnO nanorod arrays modified with dye molecules demonstrate specific light-harvesting and charge-collecting properties which are promising for the enhancement of the characteristic performance of hybrid solar ceils based on ZnO/poly(3-hexylthiophene). The properties of dyes commonly used for dye-sensitized solar cells were investigated in relation to the performance of polymer-inorganic hybrid photovoltaic devices. The use of indoline dye D205, which has dipole moments directing away from the ZnO surface, was found to suppress the reverse saturation dark current density and charge recombination and to consequently lead to higher open-circuit voltage and improved power conversion efficiency (PCE) from 0.22%to 0.71%. Derivatized squaraine molecules were synthesized and were found to improve device performance by extending the light-harvesting range to the near-infrared region, leading to increased short-circuit current density and the highest PCE of 1.02%.
机译:染料分子修饰的ZnO纳米棒阵列表现出特定的光收集和电荷收集特性,这有望提高基于ZnO /聚(3-己基噻吩)的混合太阳能电池的特性。关于聚合物-无机混合光伏器件的性能,研究了常用于染料敏化太阳能电池的染料的性能。已发现使用偶极矩远离ZnO表面的二氢吲哚染料D205可抑制反向饱和暗电流密度和电荷复合,从而导致更高的开路电压和更高的功率转换效率(PCE)。 0.22%至0.71%。合成了衍生的方酸分子,发现该分子可通过将光收集范围扩展到近红外区域来提高器件性能,从而导致短路电流密度增加,最高PCE达到1.02%。

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