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Surface modification of porous TiO2 electrode through pulse oxidative hydrolysis of TiCl3 as an efficient light harvesting photoanode for dye-sensitized solar cells

机译:通过脉冲氧化水解TiCl3作为染料敏化太阳能电池的高效光收集光阳极,对多孔TiO2电极进行表面改性

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摘要

A compact thin TiO2 layer suitable for I-3(-)/I- electrolyte could be uniformly deposited along the pore walls in porous TiO2 film by pulse oxidative hydrolysis of TiCl3 solution. When applied the continuous anodic current, the TiO2 layer might be deposited at the entrance to the pores, leading to a decrease in the penetration of electrolyte into the pores of the porous TiO2 film. By tuning the pulse duty cycle and current density, the thin TiO2 layer could provide more active sites for adsorption of dye and improve the electrical contact between TiO2 nanoparticles. Moreover, the compact thin TiO2 layer could deposit on the exposed surface of fluoride-doped tin oxide substrate, giving rise to a suppression of charge recombination. Surface modification of porous TiO2 photoanode through pulse oxidative hydrolysis turned out to have positive effect on the photovoltaic characteristics of dye-sensitized solar cell (DSSC). DSSC with modified photoanode could significantly suppress the dark current density and increase the short-circuit current density in comparison to that with untreated photoanode. The energy conversion efficiency of DSSC was significantly enhanced from 7.12 to 8.47% when using the photoanode post-treated by pulse oxidative hydrolysis of TiCl3. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过脉冲氧化水解TiCl3溶液,可以在多孔TiO2薄膜的孔壁上均匀地沉积一层适合I-3(-)/ I-电解质的致密的TiO2薄层。当施加连续阳极电流时,TiO 2层可能沉积在孔的入口处,导致电解质渗透到多孔TiO 2膜的孔中的渗透减少。通过调节脉冲占空比和电流密度,薄的TiO2层可以提供更多的活性部位来吸附染料,并改善TiO2纳米粒子之间的电接触。此外,致密的TiO2薄层可以沉积在掺杂氟化物的氧化锡衬底的暴露表面上,从而抑制了电荷复合。事实证明,通过脉冲氧化水解对多孔TiO2光阳极进行表面改性对染料敏化太阳能电池(DSSC)的光伏特性具有积极影响。与未处理的光电阳极相比,具有修饰的光电阳极的DSSC可以显着抑制暗电流密度并增加短路电流密度。当使用TiCl3脉冲氧化水解后处理的光阳极时,DSSC的能量转换效率从7.12显着提高到8.47%。 (C)2016 Elsevier Ltd.保留所有权利。

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