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Influence of dye dispersion on photoelectric conversion properties of dye-containing titania electrodes

机译:染料分散液对含染料二氧化钛电极光电转换性能的影响

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摘要

Dye-dispersing titania electrodes were prepared from the dye-containing titanium alkoxide sols by a room temperature sol-gel process and steam treatment at 110 degrees C. The spectroscopic and photoelectric conversion properties of the electrodes were investigated in order to clarify the influences of the dye dispersion and the co-dispersion of the two dyes on the electron transfer process. The fluorescein and eosin Y molecules were dispersed into the titania as their monomers. The shapes of the photocurrent action spectra of the fluorescein and/or eosin Y-dispersing titania electrodes corresponded well to those of their absorption spectra because the excited electrons in the dyes were directly injected into the titania conduction band without any interaction between the dye molecules, such as energy transfer. This result indicated that the dye molecules were separately encapsulated in the pores between the titania nanoparticles and tightly adsorbed or bonded to the titania particle surface. The internal quantum efficiency of the photoelectric conversion was higher than that of the conventional dye-adsorbing titania electrodes in which the dye molecules were easily aggregated and thus deactivated by the energy transfer. The co-dispersion of the two dyes on the titania surface allowed effective extension of the visible light region for the photoelectric conversion.
机译:染料分散的二氧化钛电极是由含染料的钛醇盐溶胶通过室温溶胶-凝胶法和110℃的蒸汽处理制备的。研究了电极的光谱和光电转换性能,以阐明电极的光谱和光电转换性能。染料的分散和两种染料在电子转移过程中的共分散。荧光素和曙红Y分子作为单体分散在二氧化钛中。荧光素和/或曙红Y分散二氧化钛电极的光电流作用谱的形状与它们的吸收光谱非常吻合,因为染料中的激发电子被直接注入二氧化钛导带中,而染料分子之间没有任何相互作用,例如能量转移。该结果表明,染料分子被分别包封在二氧化钛纳米颗粒之间的孔中,并被牢固地吸附或结合至二氧化钛颗粒表面。光电转换的内部量子效率高于传统的染料吸附二氧化钛电极的效率,在传统的染料吸附二氧化钛电极中,染料分子易于聚集并因此通过能量转移而失活。两种染料在二氧化钛表面上的共分散允许有效地扩展可见光区域以进行光电转换。

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