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Hexagonal Mesoporous Titanium Tetrasulfonates with Large Conjugated Hybrid Framework for Photoelectric Conversion

机译:具有大共轭杂化光电转换框架的六角形介孔四磺酸钛盐

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Ordered hexagonal mesoporous titanium retrasulfonate materials (CuPcS4-Ti) were synthesized through a hydrothermal process with the assistance of surfactant Ft 27. by using the copper(II) phthalocyanine-tetrasulfonic acid tetrasodium salt (CuPcS4) as coupling molecules. It was confirmed by TEM. IR. UV-vis, TGA-DSC, and XRD analysis that the CuPcS,, groups were homogenously incorporated into the hybrid frameworK, and the synthesized materials could be stable to around 328 °C with the hybrid framework and ordered mesopores well-preserved A high dye content of Ti/CuPcS4 molar ratio at around 50 was achieved, which could be useful in the photoelectric conversion applications A novel model of isolated dye centers surrounded by semiconductor oligomers was set. which could effectively suppress the aggregation of dye molecules that may decrease the conversion effeciency in some traditional dye-senslti2ed solar cells. It was proved that the synthesized CuPcS4-Ti exhibited a relatively high conversion efficiency oF 0 53% It was very valuable to access such a high conversion efficiency by using low-cost and commercially available dye molecules instead of using the expensive unsymmetrical phthalocyanines synthesized by the time-consuming methods in the literature.
机译:以铜(II)酞菁铜-四磺酸四钠盐(CuPcS4)为偶联分子,在表面活性剂Ft 27的辅助下,通过水热法合成了有序六方介孔钛磺酸盐材料(CuPcS4-Ti)。通过TEM确认。红外线通过UV-vis,TGA-DSC和XRD分析,将CuPcS,基团均匀地掺入到杂化框架中,并且在杂化框架下合成的材料可以稳定在328°C左右,并且有序中孔保存完好的A高染料Ti / CuPcS4的摩尔比达到50左右,可用于光电转换应用。建立了一个被半导体低聚物包围的孤立染料中心的新模型。这可以有效地抑制染料分子的聚集,从而降低某些传统的染料敏化太阳能电池的转换效率。已证明合成的CuPcS4-Ti表现出相对较高的转化效率,约为0 0 53%。通过使用低成本和可商购的染料分子而不是使用由合成的CuPcS4-Ti合成的昂贵的不对称酞菁,获得如此高的转化效率非常有价值。文献中耗时的方法。

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