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Sensitization of ZnO in Stacked Structures containing Multiple Dyes Grown using Liquid Phase Molecular Layer Deposition

机译:液相分子层沉积法在含有多种染料的堆叠结构中增敏ZnO

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Sensitization by two-dye-stacked structures of p-type dye-type dye adsorbed on ZnO can be applied to dye-sensitized solar cells. We attempted sensitization by stacked structures containing three or four kinds of dyes for further spectral widening. The structures were fabricated by liquid-phase molecular layer deposition (LP-MLD) using the electrostatic force between p-type dyes accepting electrons (rose bengal (RB), eosine (EO)) and n-type dyes donating electrons (crystal violet (CV), brilliant green (BG)). After p-type dyes of p1 and p2 were deposited on ZnO, n-type dyes of n1 and n2 were deposited to connect them to p1 or p2. [ZnO/EO/CV+BG] exhibited a broad photocurrent spectrum extending to the long wavelength region beyond 600 lira. In [ZnO/RB+EO/CV+BG], although a strong sensitization was observed in the long wavelength region, the photocurrent decreased in the short wavelength region. These results will be explained by the energy-level schemes determined using the photoemission yield spectroscopy in air.
机译:通过吸附在ZnO上的p型染料/ n型染料的两色堆叠结构敏化可以应用于染料敏化太阳能电池。我们尝试通过包含三种或四种染料的堆叠结构进行敏化,以进一步扩宽光谱。结构是通过液相分子层沉积(LP-MLD)利用受电子的p型染料(玫瑰红(RB),曙红(EO))和受电子的n型染料(结晶紫( CV),鲜绿色(BG))。在ZnO上沉积p1和p2的p型染料后,沉积n1和n2的n型染料以将它们连接到p1或p2。 [ZnO / EO / CV + BG]表现出宽广的光电流谱,延伸至600里拉以上的长波长区域。在[ZnO / RB + EO / CV + BG]中,尽管在长波长区域观察到强的敏化,但是在短波长区域光电流降低。这些结果将通过使用空气中的光发射产率光谱法确定的能级方案进行解释。

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    Graduated School of Bionics, Computer and Media Sciences, Tokyo University of Technology, Hachioji, Tokyo 192-0982, Japan;

    Graduated School of Bionics, Computer and Media Sciences, Tokyo University of Technology, Hachioji, Tokyo 192-0982, Japan;

    Graduated School of Bionics, Computer and Media Sciences, Tokyo University of Technology, Hachioji, Tokyo 192-0982, Japan;

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