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Highly improved photocurrents of dye-sensitized solar cells containing ultrathin 3D inverse opal electrodes sensitized with a dithienothiophene-based organic dye

机译:高度敏化的染料敏化太阳能电池的光电流,该染料敏化太阳能电池包含用二噻吩并噻吩类有机染料敏化的超薄3D反蛋白石电极

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摘要

Ultrathin but highly efficient dye-sensitized solar cells (DSCs) may be beneficial for making flexible devices and lowering production costs. Here, a uniform, ultrathin inverse opal (IO) electrode sensitized with a dithienothiophene (DTT)-based sensitizer (Carbz-PAHTDTT) was successfully prepared and demonstrated as a high-efficiency DSC electrode. The ultrathin IO was fabricated using a polystyrene opal template subsequently coated with TiO2 via a chemical vapor deposition approach. The Carbz-PAHTDTT-sensitized IO film was compared to an IO film sensitized by a conventional N719 dye. The charge collection efficiency of the Carbz-PAHTDTT-sensitized TiO2 IO electrode was comparable to the N719-sensitized electrode. However, the Carbz-PAHTDTT TiO2 IO electrode DSCs exhibited remarkably high light-harvesting efficiency due to high adsorption density and visible light absorption features of the Carbz-PAHTDTT-sensitized electrode. The Carbz-PAHTDTT DSCs containing a 3.5 mu m thick IO electrode displayed a photocurrent density of 11.23 mA cm(-2), which was 1.5 times higher compared to the N719-sensitized DSCs.
机译:超薄但高效的染料敏化太阳能电池(DSC)可能有利于制造柔性设备并降低生产成本。在此,成功制备了用基于二噻吩并噻吩(DTT)的敏化剂(Carbz-PAHTDTT)敏化的均匀,超薄反蛋白石(IO)电极,并证明了它是高效DSC电极。使用聚苯乙烯蛋白石模板制造超薄IO,然后通过化学气相沉积方法将其涂覆TiO2。将Carbz-PAHTDTT敏化的IO膜与常规N719染料敏化的IO膜进行了比较。 Carbz-PAHTDTT敏化的TiO2 IO电极的电荷收集效率与N719敏化电极相当。但是,由于Carbz-PAHTDTT敏化电极的高吸附密度和可见光吸收特性,Carbz-PAHTDTT TiO2 IO2电极DSC表现出显着的集光效率。包含3.5微米厚的IO电极的Carbz-PAHTDTT DSC显示的光电流密度为11.23 mA cm(-2),是N719敏化DSC的1.5倍。

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