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Multilayer TiO2 nanorod cloth/nanorod array electrode for dye-sensitized solar cells and self-powered UV detectors

机译:多层二氧化钛奈米棒布/奈米棒数组色素增感太阳能电池的电极自供电的紫外探测器

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摘要

A multilayer TiO2 nanorod-assembled cloth/nanorod array based electrode was fabricated by transferring different layers of TiO2 nanorod-assembled cloth (TNRC) onto nanorod array grown on the conducting FTO substrate (titania nanorod, TNR). Combining the superior electron transport characteristics of TNR and outstanding optical properties of TNRC, the nanostructured electrode composed of two layers of TNRC meets the optimized design for high quality dye-sensitized solar cells (DSCs) and self-powered UV detectors. The highest efficiency of 4.02% for DSC under AM 1.5 was achieved with a high short circuit current density of 9.81 mA cm~(-2), which was proved to be owing to the enhanced dye anchoring, light scattering and reduced charge recombination. For the photoelectrochemical (PEC) UV detector, the highest quantum efficiency of over 46% was obtained and a high photocurrent response of 0.271 mA cm~(-2) was observed, together with the excellent self-powered, fast response and "visible blind" characteristics. A perfect linear response to the changed low-power signal indicates great potential for practical applications.
机译:一个多层二氧化钛nanorod-assembled布/奈米棒基于阵列电极是捏造的将不同的二氧化钛层nanorod-assembled布(TNRC)到奈米棒数组生长在进行FTO衬底(二氧化钛奈米棒,TNR)。运输TNR特点和突出TNRC光学特性,纳米电极组成的两层TNRC满足高质量的优化设计涂料太阳能电池(DSCs)和自供电的紫外探测器。下4.02%的DSC 1.5实现短路电流密度高9.81 mA厘米~(2),这是由于增强染料锚定,光散射和减少电荷复合。光电化学(压电)紫外检测器最高量子效率超过46%和高的光电流响应马0.271厘米~(2)观察,一起优秀的自供电的,快速响应“可见盲”的特点。应对低功率信号改变表明实际潜力巨大应用程序。

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