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Facile fabrication of hyper-branched TiO_2 hollow spheres for high efficiency dye-sensitized solar cells

机译:高效染料敏化太阳能电池超支化TiO_2空心球的制备

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TiO2 hollow spheres (HSs) with external diameters around 430 nm were prepared using carbon spheres as the templates. Then they were introduced to another hydrothermal process for branching. TiCl3 was used as the Ti source in this stage and hydrothermal time was changed in a wide range. Conic branches were grown on the surface of the TiO2 HSs while the spherical shapes were quite preserved. The base diameter and height of the TiO2 branches were controlled by autoclaving time. Three different photoanodes were fabricated and applied in dye-sensitized solar cells (DSCs). The first one was a single-layer photoanode composed of hydrothermally grown TiO2 nanocrystals (NCs) with dominant size of 25 nm. The second electrode was a nanocrystalline TiO2 layer covered by a TiO2 HSs light scattering layer. The third type was a double-layer photoanode composed of TiO2 NCs sub-layer and hyper-branched TiO2 HSs over-layer. The influence of the morphology of the grown branches on the photovoltaic performance of the DSCs was investigated and discussed. A maximum energy conversion efficiency of 9.85% was achieved for the pioneer cell through the optimization of the branching process. This efficiency was increased about 39% and 9% compared to those of the DSCs with TiO2 NCs and TiO2 NCs/TiO2 HSs photoelectrodes. The reason was attributed to the increased amount of dye adsorption and light scattering of the optimized cell due to the applied hyper-branched TiO2 HSs.
机译:以碳球为模板制备了外径约为430 nm的TiO2中空球(HSs)。然后将它们引入另一个水热过程进行分支。在该阶段中,将TiCl 3用作Ti源,并且水热时间在宽范围内变化。圆锥形的分支生长在TiO2 HSs的表面上,而球形则保留得很充分。 TiO2支链的基径和高度通过高压灭菌时间控制。制作了三种不同的光阳极并将其应用于染料敏化太阳能电池(DSC)。第一个是由水热生长的TiO2纳米晶体(NCs)组成的单层光阳极,其主尺寸为25 nm。第二电极是被TiO 2 HSs光散射层覆盖的纳米晶TiO 2层。第三类是由TiO2 NCs子层和超支化TiO2 HSs上层组成的双层光电阳极。研究和讨论了生长的分支的形态对DSC的光伏性能的影响。通过优化分支过程,先锋电池的最大能量转换效率达到9.85%。与具有TiO2 NCs和TiO2 NCs / TiO2 HSs光电电极的DSC相比,此效率分别提高了39%和9%。原因归因于由于施加的超支化TiO2 HSs,染料吸附量的增加和优化单元的光散射。

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