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Radially oriented mesoporous TiO2 microspheres with single-crystal–like anatase walls for high-efficiency optoelectronic devices

机译:放射状介孔TiO2微球具有单晶锐钛矿型壁用于高效光电器件

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摘要

Highly crystalline mesoporous materials with oriented configurations are in demand for high-performance energy conversion devices. We report a simple evaporation-driven oriented assembly method to synthesize three-dimensional open mesoporous TiO2 microspheres with a diameter of ~800 nm, well-controlled radially oriented hexagonal mesochannels, and crystalline anatase walls. The mesoporous TiO2 spheres have a large accessible surface area (112 m2/g), a large pore volume (0.164 cm3/g), and highly single-crystal–like anatase walls with dominant (101) exposed facets, making them ideal for conducting mesoscopic photoanode films. Dye-sensitized solar cells (DSSCs) based on the mesoporous TiO2 microspheres and commercial dye N719 have a photoelectric conversion efficiency of up to 12.1%. This evaporation-driven approach can create opportunities for tailoring the orientation of inorganic building blocks in the assembly of various mesoporous materials.
机译:高性能能量转换装置需要具有定向结构的高度结晶的介孔材料。我们报告了一种简单的蒸发驱动的定向组装方法,以合成直径约〜800 nm的三维开放中孔TiO2微球,控制良好的径向六角形介孔和结晶锐钛矿壁。介孔TiO2球具有较大的可及表面积(112 m 2 / g),大孔体积(0.164 cm 3 / g)和高度单晶,例如具有显性(101)暴露小面的锐钛矿墙,使其非常适合进行介观光电阳极薄膜。基于介孔TiO2微球和商用染料N719的染料敏化太阳能电池(DSSC)的光电转换效率高达12.1%。这种蒸发驱动的方法可以为在各种介孔材料的组装中定制无机构件的方向提供机会。

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