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Transparent conductive oxideless tandem dye-sensitizedsolar cells consisting of light-splitting structures

机译:透明导电无氧化串联染料 - 由光分裂结构组成的敏化散细胞

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Fiber and pillar tandem dye-sensitized solar cells (DSCs), which do not need transpar-ent conductive oxideless layer tandem cells (TCO-less TAN), are fabricated and their fundamen-tal tandem properties are evaluated. TCO-less TAN cells consist of a light-splitting waveguide and TCO-less DSCs. The TCO-less DSC is composed of a nanoporous titania back-contacted with a porous Ti electrode or a nanoporous titania sheet supported by a stainless steel mesh whose surface was protected with TiO_x thin layers. Two kinds of light-splitting structures are introduced. One is a light-splitting structure in which polystyrene particles with different diame-ters are dispersed in water. The other consists of dichroic mirrors. These light-splitting structures are coupled with TCO-less DSCs stained with dyes absorbing light corresponding to these split lights. Open circuit voltages ( of these TCO-less tandem DSCs are two times (two tandem structure) or three times (three tandem structure) higher than those of the corresponding single cells, demonstrating that these structures work as tandem cells.
机译:纤维和柱的串联染料敏化太阳能电池(DSC)的,其不需要transpar-ENT导电oxideless层串联电池(TCO-少TAN),被制造和它们的fundamen河谷串联性能进行了评价。 TCO-少TAN电池由一个分光波导和TCO-更少的DSC的。的TCO-更少DSC由纳米多孔二氧化钛与多孔钛电极或由不锈钢网,其表面用TiO_x薄层保护支撑的纳米多孔二氧化钛片背面接触的。两种分光结构进行了介绍。一种是其中具有不同diame-TER值聚苯乙烯颗粒分散在水中的光分离结构。其他包括分色镜。这些分光结构加上用染料吸收对应于这些分割灯光染色TCO-更少的DSC。开路电压(这些TCO-少串联DSC的是两次(两个串联的结构)或三次(三个串联的结构)比相应的单电池的高,这表明这些结构的工作作为串联电池。

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