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用于染料敏化太阳能电池的 TiO2 反蛋白石电极的简便合成。

Facile synthesis of TiO2 inverse opal electrodes for dye-sensitized solar cells.

机构信息

Department of Chemical and Biomolecular Engineering, Sogang University, Seoul 121-742, Republic of Korea.

出版信息

Langmuir. 2011 Jan 18;27(2):856-60. doi: 10.1021/la104512c. Epub 2010 Dec 14.

Abstract

Engineering of TiO(2) electrode layers is critical to guaranteeing the photoconversion efficiency of dye-sensitized solar cells (DSSCs). Recently, a novel approach has been introduced for producing TiO(2) electrodes using the inverted structures of colloidal crystals. This paper describes a facile route to producing ordered macroporous electrodes from colloidal crystal templates for DSSCs. Using concentrated colloids dispersed in a volatile medium, the colloidal crystal templates were obtained within a few minutes, and the thickness of the template was easily controlled by changing the quantity of colloidal solution deposited. Here, the effects of the structural properties of the inverse opal TiO(2) electrodes on the photovoltaic parameters of DSSCs were investigated. The photovoltaic parameters were measured as a function of pore ordering and electrode film thickness. Moreover, DSSC applications that used either liquid or viscous polymer electrolyte solutions were investigated to reveal the effects of pore size on performance of an inverse opal TiO(2) electrode.

摘要

TiO(2) 电极层的工程设计对于保证染料敏化太阳能电池(DSSC)的光转化效率至关重要。最近,一种使用胶体晶体的倒置结构来生产 TiO(2) 电极的新方法已经被引入。本文描述了一种从胶体晶体模板制备 DSSC 有序大孔电极的简便方法。使用分散在挥发性介质中的浓缩胶体,可以在几分钟内获得胶体晶体模板,并且通过改变沉积的胶体溶液的量可以轻松控制模板的厚度。在这里,研究了反蛋白石 TiO(2) 电极的结构特性对 DSSC 光伏参数的影响。光伏参数作为孔有序和电极膜厚度的函数进行了测量。此外,还研究了使用液体或粘性聚合物电解质溶液的 DSSC 应用,以揭示孔尺寸对反蛋白石 TiO(2) 电极性能的影响。

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