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Hybrid bulk heterojunction solar cells with vertically aligned zno/zno1-xsx nanorods in core-shell like nanostructure

机译:在核壳状纳米结构中具有垂直排列的zno / zno1-xsx纳米棒的混合体异质结太阳能电池

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Hybrid inorganic-organic solar cells using vertically aligned ZnO nanorod array forming a core with nanocrystalline ZnOS shell integrated with polymeric P3HT+PCBM semiconductor blend are investigated. ZnO nanorod array over SnO:F coated transparent conductor glass substrates are capped by sulfur chemiplating to create ZnO/ZnOS core-shell 3-dimensional electron transport electrode nanostructure. Dense array of vertically aligned nanorods help mitigate the short exciton diffusion length limitation in polymeric donor-acceptor blend by enhancing surface area and proximity with electron collector. The ZnO nanorod core via anion substitution at oxygen sites with sulfur increase p-type dopability of ZnOS shell and create a junction electric field. With low p-doped ZnOS shell in contact with P3HT+PCBM blend, this junction field is favorably directed to facilitate charge exciton dissociation, carrier separation and fast electron transport and minimize interface recombination. With large junction area, inclusive electric field and direct pathway through ZnO core for electron collection, the expected photocurrent enhancement is seen. Hybrid solar cells exhibit an overall conversion efficiency of 3.58% and strong dependence of photocurrent on the length of ZnO nanorods. The results indicate that the efficiency of such hybrid solar cells is significantly improved due to the unique morphology of the ZnO/ZnOS core-shell layer.
机译:研究了使用垂直排列的ZnO纳米棒阵列形成芯的杂化无机有机太阳能电池,该芯具有集成有聚合物P3HT + PCBM半导体共混物的纳米晶ZnOS壳。 SnO:F涂覆的透明导体玻璃基板上的ZnO纳米棒阵列通过硫化学键合形成ZnO / ZnOS核-壳3维电子传输电极纳米结构。垂直排列的纳米棒的致密阵列通过增加表面积和与电子收集器的接近性,有助于减轻聚合物供体-受体共混物中短暂的激子扩散长度限制。 ZnO纳米棒核通过在氧位点被硫磺取代而增加了ZnOS壳的p型掺杂性,并产生了结电场。在低p掺杂ZnOS外壳与P3HT + PCBM混合物接触的情况下,该结场的方向有利于促进电荷激子离解,载流子分离和快速电子传输,并使界面重组最小化。具有大的结面积,包容性电场和通过ZnO核心进行电子收集的直接路径,可以看到预期的光电流增强。混合太阳能电池的总转换效率为3.58%,并且光电流对ZnO纳米棒的长度有很强的依赖性。结果表明,由于ZnO / ZnOS核-壳层的独特形态,这种混合太阳能电池的效率得到了显着提高。

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