首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Spontaneous formation of nanoripples on the surface of ZnO thin films as hole-blocking layer of inverted organic solar cells
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Spontaneous formation of nanoripples on the surface of ZnO thin films as hole-blocking layer of inverted organic solar cells

机译:ZnO薄膜表面自发形成纳米波纹,作为反向有机太阳能电池的空穴阻挡层

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摘要

A simple method for spontaneous formation of nanoripples on ZnO thin films was developed, and these nanostructured ZnO films were used as hole-blocking layer in inverted organic solar cells. Moreover, the size (height) of nanoripples on ZnO surface could be controlled in the range of several tens of nanometers. Among various ZnO films, surface structures with ~70 nm-high nanoripples resulted in the best photovoltaic performance of the organic solar cell consisting of a stack of indium tin oxide/ZnO/ regioregular poly (3-hexyl thiophene), phenyl-C_(61)-butyric acid methyl ester/Ag. The power conversion efficiency of inverted organic solar cells consisting of with 70 nm-high ZnO nanoripples (~3.2%) was higher than that of a relatively flat ZnO surface by a factor of ~2. Existence of nanoripples on ZnO results in a higher contact area between ZnO and active layer, leading to an enhanced photovoltaic performance.
机译:开发了一种在ZnO薄膜上自发形成纳米波纹的简单方法,并将这些纳米结构的ZnO薄膜用作倒置有机太阳能电池中的空穴阻挡层。而且,可以将ZnO表面上的纳米波纹的尺寸(高度)控制在几十纳米的范围内。在各种ZnO薄膜中,具有约70 nm高纳米波纹的表面结构使有机太阳能电池具有最佳的光伏性能,该有机太阳能电池由氧化铟锡/ ZnO /区域规则的聚(3-己基噻吩),苯基-C_(61 )-丁酸甲酯/ Ag。由70 nm高的ZnO纳米波纹(〜3.2%)组成的倒置有机太阳能电池的功率转换效率比相对平坦的ZnO表面的功率转换效率高约2倍。 ZnO上存在纳米波纹会导致ZnO与活性层之间的接触面积增加,从而提高光伏性能。

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