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High efficiency dye-sensitized solar cells based on three-dimensional multilayered ZnO nanowire arrays with 'caterpillar-like' structure

机译:基于具有“毛虫状”结构的三维多层ZnO纳米线阵列的高效染料敏化太阳能电池

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摘要

A 3D ZnO nanowire-based dye-sensitized solar cell (DSSC) with unique "caterpillar-like" structure was designed. Because of the significant improvement of the total ZnO nanowire surface area, the amount of light absorption was substantially increased. This increase in the light harvesting efficiency enables us to achieve an overall power conversion efficiency as high as 5.20%, which is the highest reported value to date for ZnO nanowire-based DSSCs. A branched-multilayered design of ZnO nanowire arrays grown from ZnO nanofiber seed layers proves to be very successful in fabricating 3D ZnO nanowire arrays. Practically, electrospun ZnO nanowires were used as the seeds in multilayer growth of ZnO nanowire arrays with a unique "caterpillar- like" structure. This unique structure significantly enhances the surface area of the ZnO nanowire arrays, leading to higher short-circuit currents. Additionally, this design resulted in closer spacing between the nanowires and more direct conduction pathways for electron transfer. Thus, the open-circuit voltage was so significantly improved as a direct result of the reduction in electron recombination.
机译:设计了具有独特的“毛毛虫状”结构的3D ZnO纳米线基染料敏化太阳能电池(DSSC)。由于总的ZnO纳米线表面积的显着改善,光吸收量大大增加。集光效率的提高使我们能够实现高达5.20%的整体功率转换效率,这是迄今为止基于ZnO纳米线的DSSC的最高报道值。从ZnO纳米纤维种子层生长的ZnO纳米线阵列的分支多层设计被证明在制造3D ZnO纳米线阵列中非常成功。实际上,电纺ZnO纳米线被用作具有独特“毛毛虫状”结构的ZnO纳米线阵列多层生长的种子。这种独特的结构显着增加了ZnO纳米线阵列的表面积,从而导致更高的短路电流。另外,这种设计导致纳米线之间的间距更近,并且电子传输的直接传导路径更紧密。因此,开路电压如此显着地改善,这是电子复合减少的直接结果。

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