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Nanostructured Mesoporous Thick Films of Titania for Dye-Sensitized Solar Cells

机译:染料敏化太阳能电池纳米结构介孔厚膜

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For energy harvesting, such as in dye-sensitized solar cells, thick films of nanostructured mesoporous titania are inevitably required. Although various mesoporous thin films, i.e., film thickness below 300 nm, such as those of TiO2 and SiO2, have been widely investigated via a supramolecular templating approach in the past decade, little progress has been made with thick films, i.e., film thickness of at least several micrometers. In order to develop the desperately wanted thick films of mesoporous nanostructure for titania, we have successfully modified the supramolecular templating approach, where the highly crystallized mesoporous titania thick films of varying thicknesses and different morphologies are realized, resulting in the formation of highly ordered body-centered orthorhombic and disordered wormlike mesostructures. The performance of these mesoporous films in dye-sensitized solar cells has been investigated, achieving a maximum efficiency of-7% at the film thickness of 6 μm. The highly ordered mesoporous titania film outperforms the disordered counterpart of the same thickness in both short circuit current and efficiency. The improved cell performance of the ordered mesoporous film is shown to arise from the enhanced electron transport in the regularly packed titania network due to the enhanced crystalline grain connectivity.
机译:为了能量收获,例如在染料敏化太阳能电池中,不可避免地需要纳米结构介孔二氧化钛的厚膜。尽管在过去十年中,已经通过超分子模板方法被广泛研究了各种介孔薄膜,即薄膜厚度,例如TiO 2和SiO 2的薄膜厚度,但是通过厚膜,即薄膜厚度的膜厚度已经进展了一点至少几微米。为了开发绝望地为二氧化钛的介孔纳米结构的厚膜,我们已经成功地修改了超分子模板方法,其中实现了不同厚度和不同形态的高度结晶的介孔二氧化钛厚膜,导致形成高度有序的身体 - 以正常的正交和无序的蠕虫般的腹腔结构。研究了这些中孔膜在染料敏化太阳能电池中的性能,在6μm的膜厚度下实现了-7%的最大效率。高度有序的介孔二氧化钛薄膜在短路电流和效率中优于相同厚度的无序对应物。由于增强的晶粒连接,所示的介孔膜的改善的介孔膜的细胞性能被示出为来自定期包装的二氧化钛网络中的增强的电子传输。

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