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Hyperbranched quasi-1d nanostructures for solid-state dye-sensitized solar cells

机译:固态染料敏化太阳能电池的超支准1d纳米结构

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In this work we demonstrate hyperbranched nanostructures, grown by pulsed laser deposition, composed of one-dimensional anatase single crystals assembled in arrays of high aspect ratio hierarchical mesostructures. The proposed growth mechanism relies on a two-step process: self-assembly from the gas phase of amorphous TiO_2 clusters in a forest of tree-shaped hierarchical mesostructures with high aspect ratio; oriented crystallization of the branches upon thermal treatment. Structural and morphological characteristics can be optimized to achieve both high specific surface area for optimal dye uptake and broadband light scattering thanks to the microscopic feature size. Solid-state dye sensitized solar cells fabricated with arrays of hyperbranched TiO _2 nanostructures on FTO-glass sensitized with D102 dye showed a significant 66% increase in efficiency with respect to a reference mesoporous photoanode and reached a maximum efficiency of 3.96% (among the highest reported for this system). This result was achieved mainly thanks to an increase in photogenerated current directly resulting from improved light harvesting efficiency of the hierarchical photoanode. The proposed photoanode overcomes typical limitations of 1D TiO_2 nanostructures applied to ss-DSC and emerges as a promising foundation for next-generation high-efficiency solid-state devices comprosed of dyes, polymers, or quantum dots as sensitizers.
机译:在这项工作中,我们演示了通过脉冲激光沉积生长的超支化纳米结构,该结构由一维锐钛矿单晶组成,这些单晶锐晶单晶以高纵横比分级介观结构的阵列组装而成。所提出的生长机制依赖于两步过程:在具有高长宽比的树形分层介观结构森林中,由非晶态TiO_2团簇的气相自组装;热处理后支链取向结晶。借助微观特征尺寸,可以优化结构和形态特征,以实现高比表面积以实现最佳的染料吸收和宽带光散射。用D102染料敏化的FTO玻璃上的超支化TiO _2纳米结构阵列制造的固态染料敏化太阳能电池,相对于参比介孔光电阳极,其效率显着提高了66%,最高效率达到3.96%(其中最高的是报告此系统)。取得这一结果主要是由于分层光电阳极的光收集效率提高直接导致光生电流的增加。提出的光阳极克服了应用于ss-DSC的一维TiO_2纳米结构的典型局限性,并成为下一代高效的固态器件的有希望的基础,该器件由染料,聚合物或量子点作为敏化剂。

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