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首页> 外文期刊>Nanoscale >Microsphere assembly of TiO2 mesoporous nanosheets with highly exposed (101) facets and application in a light-trapping quasi-solid-state dye-sensitized solar cell
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Microsphere assembly of TiO2 mesoporous nanosheets with highly exposed (101) facets and application in a light-trapping quasi-solid-state dye-sensitized solar cell

机译:二氧化钛介孔nanosheets的微球组装与高度暴露和应用(101)方面在一个光捕获quasi-solid-state涂料的太阳能电池

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The morphology of nano-titania has a significant effect on the photoelectric properties of dye-sensitized solar cells. In this study, microsphere assembly of a TiO2 mesoporous nanosheet constructed by nano-cuboids was conducted via a simple hydrothermal process. The XRD pattern indicated that the hierarchical mesoporous microspheres are anatase phase with decreased (004) peaks. Raman spectrum shows enhanced E-g peaks at 143 and 638 cm(-1) caused by the symmetric stretching vibration of O-Ti-O of the (101) crystalline facet in anatase TiO2. FESEM and TEM images show that well monodispersed TiO2 microspheres with a diameter of 2 mu m are assembled by TiO2 mesoporous nanosheets with exposed (101) facets. The oriented attachment of TiO2 nanocuboids along the (101) direction leads to the formation of mesoporous titania nanosheets. The UV-Vis spectrum shows that the mesoporous TiO2 nanosheets have high scattering ability and light absorption by dye. Quasi-solid-state dye-sensitized solar cells that incorporate these microspheres into the top scattering layers exhibit a prominent improvement in the power conversion efficiency of 7.51%, which shows a 45.8% increase in the overall conversion efficiency when compared with the spine hierarchical TiO2 microspheres (5.15%). There is the potential application for microsphere assembly of mesoporous TiO2 nanosheets in quasi-solid-state dye-sensitized solar cells with excellent stability.
机译:nano-titania有显著的形态对的光电性能的影响涂料的太阳能电池。二氧化钛介孔的微球组装nanosheet由nano-cuboids通过一个简单的水热过程。XRD表明,分层模式介孔微球是锐钛矿相(004)峰下降。增强eg峰值为143和638 cm(1)引起的O-Ti-O的对称伸缩振动(101)水晶方面的锐钛矿二氧化钛。FESEM和TEM图像显示,单分散的二氧化钛微球的直径2μm通过二氧化钛介孔nanosheets组装暴露(101)方面。二氧化钛nanocuboids沿着(101)方向线索介孔二氧化钛的形成nanosheets。介孔二氧化钛nanosheets高散射能力和染料的光吸收。色素增感太阳能电池Quasi-solid-state这些微球合并到顶部散射层表现出突出的进步电力转换效率为7.51%,整体提高了45.8%转换效率相比的脊柱分层二氧化钛微球(5.15%)。有潜在的应用介孔二氧化钛微球组装在quasi-solid-state nanosheets涂料太阳能电池的稳定性。

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