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Hierarchical TiO2 microspheres composed with nanoparticle-decorated nanorods for the enhanced photovoltaic performance in dye-sensitized solar cells

机译:由纳米粒子修饰的纳米棒组成的分层TiO2微球,用于增强染料敏化太阳能电池的光伏性能

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Hierarchical TiO _(2) microspheres composed of nanoparticle-decorated nanorods (NP-MS) were successfully prepared with a two-step solvothermal method. There were three benefits associated with the use of NP-MS as a photoanode material. The decoration of nanoparticles improved the specific surface area and directly enhanced the dye loading ability. Rutile nanorods serving as electron transport paths resulted in fast electron transport and inhibited the charge recombination process. The three-dimensional hierarchical NP-MS structure supplied a strong light scattering capability and good connectivity. Thus, the hierarchical NP-MS combined the beneficial properties of improved scattering capability, dye loading ability, electron transport and inhibited charge recombination. Attributed to these advantages, a photoelectric conversion efficiency of up to 7.32% was obtained with the NP-MS film-based photoanode, resulting in a 43.5% enhancement compared to the efficiency of the P25 film-based photoanode (5.10%) at a similar thickness. Compared to traditional photoanodes with scattering layers or scattering centers, the fabrication process for single layered photoanodes with enhanced scattering capability was very simple. We believe the strategy would be beneficial for the easy fabrication of efficient dye-sensitized solar cells.
机译:采用两步溶剂热法成功制备了由纳米粒子修饰的纳米棒(NP-MS)组成的分层TiO _(2)微球。使用NP-MS作为光阳极材料具有三个好处。纳米粒子的装饰提高了比表面积并直接提高了染料的负载能力。金红石纳米棒作为电子传输路径导致快速的电子传输并抑制了电荷复合过程。三维分层NP-MS结构提供了强大的光散射能力和良好的连接性。因此,分级的NP-MS结合了改善的散射能力,染料负载能力,电子传输和抑制的电荷复合的有益特性。归因于这些优点,使用NP-MS薄膜基光电阳极的光电转换效率高达7.32%,与基于P25薄膜基光电阳极的效率(5.10%)相比,提高了43.5%。厚度。与具有散射层或散射中心的传统光电阳极相比,具有增强的散射能力的单层光电阳极的制造过程非常简单。我们认为该策略将有利于容易制造高效的染料敏化太阳能电池。

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