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Facile and effective synthesis of hierarchical TiO2 spheres for efficient dye-sensitized solar cells

机译:简单而有效的分级的综合色素增感太阳能高效二氧化钛球体细胞

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摘要

Three-dimensional (3D) crystalline anatase TiO2 hierarchical spheres were successfully derived from Ti foils via a fast, template-free, low-temperature hydrothermal route followed by a calcination post-treatment. These dandelion-like TiO2 spheres are composed of numerous ultrathin nanoribbons, which were subsequently split into fragile nanoflakes as a result of the decomposition of Ti-complex intermediates to TiO2 and H2O at high temperature. The dye-sensitized solar cells (DSSCs) employing such hierarchically structured TiO2 spheres as the photoanodes exhibited a light-to-electricity conversion efficiency of 8.50%, yielding a 28% enhancement in comparison with that (6.64%) of P25-based DSSCs, which mainly benefited from the enhanced capacity of dye loading in combination with effective light scattering and trapping from hierarchical architecture.
机译:三维(3 d)晶锐钛矿二氧化钛分层球成功摘要报道了通过快速从钛箔,低温热液之后焙烧后处理。二氧化钛球是由无数的超薄nanoribbons,随后被分成脆弱nanoflakes的结果分解Ti-complex中间体二氧化钛和水在高温下。太阳能电池(DSSCs)雇佣这样的层级结构结构化的二氧化钛光电阳极领域展出light-to-electricity转换效率为8.50%,收益提高28%相比,P25-based (6.64%)DSSCs,主要受益于增强染料加载结合的能力有效的光散射和捕获分层架构。

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