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首页> 外文期刊>Nanoscale >Pulsed laser deposited porous nano-carpets of indium tin oxide and their use as charge collectors in core-shell structures for dye sensitized solar cells
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Pulsed laser deposited porous nano-carpets of indium tin oxide and their use as charge collectors in core-shell structures for dye sensitized solar cells

机译:脉冲激光沉积多孔nano-carpets铟锡氧化物及其使用收藏家对染料在核壳结构敏化太阳能电池

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摘要

Porous In2O3:Sn (ITO) films resembling from brush carpets to open moss-like discrete nanostructures were grown by pulsed laser deposition under low to high background gas pressures, respectively. The charge transport properties of these mesoporous substrates were probed by pulsed laser photo-current and -voltage transient measurements in N719 dye sensitized devices. Although the cyclic voltammetry and dye adsorption measurements suggest a lower proportion of electro-active dye molecules for films deposited at the high-end background gas pressures, the transient measurements indicate similar electron transport rates within the films. Solar cell operation was achieved by the deposition of a conformal TiO2 shell layer by atomic layer deposition (ALD). Much of the device improvement was shown to be due to the TiO2 shell blocking the recombination of photoelectrons with the electrolyte as recombination lifetimes increased drastically from a few seconds in uncoated ITO to over 50 minutes in the ITO with a TiO2 shell layer. Additionally, an order of magnitude increase in the electron transport rate in ITO/TiO2 (core/shell) films was observed, giving the core-shell structure a superior ratio of recombination/transport times.
机译:多孔性研究:Sn (ITO)电影像刷地毯打开摩斯所穿的那种离散纳米结构脉冲激光沉积在低增长了吗分别高背景气体压力。的电荷传输性质介孔基质被脉冲激光探测photo-current和电压瞬态测量在N719染料敏化设备。循环伏安法和染料吸附测量表明较低的比例为电影沉积electro-active染料分子在高端背景气体压力,瞬态测量表明类似的电子电影中的运输率。操作是通过沉积的保形二氧化钛壳层的原子层沉积(ALD)。被证明是由于二氧化钛壳屏蔽吗光电子与重组电解质作为复合寿命增加彻底从裸ITO的几秒钟在50分钟的ITO二氧化钛壳层。电子传递速率增加ITO /二氧化钛(核/壳)电影是观察,给予核壳结构优越的比率重组/传输时间。

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