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Nanostructured metal oxide/conjugated polymer hybrid solar cells by low temperature solution processes

机译:低温溶液法制备纳米结构的金属氧化物/共轭聚合物混合太阳能电池

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摘要

In this article, we have proposed a nanostructured photovoltaic device based on the ZnO nanostructures/ poly(3-hexylthiophene)(P3HT): TiO2 nanorod hybrid by solution processes at low temperature. An array of ZnO nanorods with a larger size of similar to 50 nm in diameter and similar to 180 nm in length are grown to provide direct pathways for efficient charge collection. TiO2 nanorods with a size of similar to 50 nm in diameter and similar to 20-30 nm in length are incorporated into polymers to facilitate charge separation and transport by providing an increased interfacial area and a more effective transport pathway. The device performance with the inclusion of TiO2 nanorods exhibits a seven times increase in the short circuit current with respect to that without TiO2 nanorods. The device performance can be further enhanced after completely removing the residual surfactant on the TiO2 nanorods using the ligand exchange method, giving a short circuit current density of 2.67 mA cm(-2) and a power conversion efficiency of 0.59% under Air Mass 1.5 (100 mW cm(-2)) illumination.
机译:在本文中,我们提出了一种基于ZnO纳米结构/聚(3-己基噻吩)(P3HT):TiO2纳米棒的低温溶液化工艺的纳米结构光伏器件。生长具有直径类似于50 nm,长度类似于180 nm的较大尺寸的ZnO纳米棒阵列,以提供用于有效电荷收集的直接途径。将尺寸类似于直径50 nm,长度类似于20-30 nm的TiO2纳米棒掺入聚合物中,以通过增加界面面积和更有效的传输途径来促进电荷分离和传输。包含TiO2纳米棒的器件性能相对于不含TiO2纳米棒的器件,其短路电流提高了7倍。使用配体交换法完全去除了TiO2纳米棒上的残留表面活性剂后,可以进一步提高器件性能,在空气质量1.5(下,短路电流密度为2.67 mA cm(-2),功率转换效率为0.59%( 100 mW cm(-2))照明。

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