首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Nano-porous TiO_2 photovoltaic cells sensitized with metallochromic triphenylmethane dyes: [n-TiO_2/triphenylmethane dye/p-I~-/I_3~- (or CuI)]
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Nano-porous TiO_2 photovoltaic cells sensitized with metallochromic triphenylmethane dyes: [n-TiO_2/triphenylmethane dye/p-I~-/I_3~- (or CuI)]

机译:金属致变色三苯甲烷染料敏化的纳米多孔TiO_2光伏电池:[n-TiO_2 /三苯甲烷染料/ p-I〜-/ I_3〜-(或CuI)]

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摘要

Photovoltaic cells capable of generating high photo-current densities and voltages were fabricated using metallochromic triphenylmethane type dye materials by depositing nano-porous TiO_2 films onto a thin film of SnO_2 coated conducting glass. Two dye materials belonging to the triphenylmethane class namely, bromopyrogallol red and pyrocatechol violet were investigated. Molecular orbital calculations and contour plot have indicated that the LUMO level is localized on the Ti (IV) ion, whereas the HOMO level is centered around the ligand. Moving from wet cell, i.e. using I~-/I_3~- as the redox mediator to p-type solid semiconductor CuI reduces the photo-current conversion efficiency approx. 38%. Good stability for photo-current and photo-voltage were noticed when the incident light path was intercepted using UV and IR filters. Scanning electron microscopic data have revealed that particle sizes are in the range of 50-100 nm for the CuI and 10-25 nm for the deposited colloidal TiO_2 respectively.
机译:使用金属致变色三苯甲烷型染料材料,通过将纳米多孔TiO_2膜沉积到SnO_2涂覆的导电玻璃薄膜上,制造出能够产生高光电流密度和电压的光伏电池。研究了三苯甲烷类的两种染料,即溴邻苯三酚红和邻苯二酚紫。分子轨道计算和轮廓图表明,LUMO能级位于Ti(IV)离子上,而HOMO能级位于配体周围。从湿电池移动,即使用I〜-/ I_3〜-作为氧化还原介体,移至p型固体半导体CuI会降低光电流转换效率。 38%。当使用UV和IR滤光片截取入射光路径时,发现光电流和光电压具有良好的稳定性。扫描电子显微镜数据表明,CuI的粒径在50-100 nm范围内,沉积的胶体TiO_2在10-25 nm范围内。

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