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Highly efficient dye-sensitized solar cells of thick mesoporous titania films derived from supramolecular templating

机译:源自超分子模板的厚介孔二氧化钛薄膜的高效染料敏化太阳能电池

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摘要

Thick titania films of highly ordered orthorhombic pore organization and sufficient thickness up to a few micrometers have been synthesized via a supramolecular templated route and layer-by-layer deposition. An appropriate pre-heat treatment was applied to improve the mesopore accessibility. The mesoporous films were highly crystallized with the crystallite size of similar to 12 nm regardless of the film thickness, due to the spatial confinement of mesopores. A high optical transparency was demonstrated for the mesoporous films, which is ascribed to the high mesoporosity and uniformity of the ordered film structure. Both the mesopore accessibility and optical transparency have contributed to the high performance of these films as photoanodes in the dye-sensitized solar cells, showing a maximum solar energy conversion efficiency of 6.02% for a film of 5.08 mu m in thickness.
机译:已经通过超分子模板化途径和逐层沉积合成了具有高度有序的正交晶孔组织和足够厚至几微米的厚的二氧化钛膜。进行了适当的预热处理以改善中孔的可及性。由于中孔的空间限制,中孔膜高度结晶,其微晶尺寸与膜厚无关,约为12nm。介孔膜显示出高的光学透明性,这归因于有序膜结构的高介孔性和均匀性。中孔可及性和光学透明性都使这些膜在染料敏化太阳能电池中成为光阳极,从而提高了这些膜的性能,对于厚度为5.08μm的膜,最大太阳能转换效率为6.02%。

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