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Synthesis and properties of novel pyranylidene-based organic sensitizers for dye-sensitized solar cells

机译:染料敏化太阳能电池新型吡喃基苯基有机敏化剂的合成与性能

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We report herein the synthesis of nine new molecularly engineered metal-free organic pyranylidene-based dyes as efficient photosensitizers for Dye-Sensitized Solar Cells (DSSCs). Their photophysical, electrochemical, and photovoltaic properties were investigated, and their excited states have been modelled using Time-Dependent Density Functional Theory (TD-DFT). The investigation of the photovoltaic performances of this series of new dyes provided structure-property relationships where their Power Conversion Efficiencies (PCE) could be correlated to structural features, such as the length of the pi-conjugated spacer and the nature of the substituents on the upper (positions 2 and 6) and lower parts (substituents on the exocyclic carbon) of the pyranylidene electron donor moiety. While these dyes fulfilled the criteria of efficient sensitizers for TiO2-based DSSCs, their photovoltaic performances were found to depend on the dye packing arrangements controlled by substituents on the pyranylidene group. The highest Power Conversion Efficiency of 5.52% was reached with the 20a dye containing phenyl substituent groups in both upper and lower parts of the pyranylidene fragment and with one thienyl pi-conjugated spacer.
机译:我们在本文中报告了九种新的分子工程化的无金属嘧啶基染料作为染料敏化太阳能电池(DSSCs)的有效光敏剂。研究了它们的光物理,电化学和光伏性能,并且它们的激发态已经使用时间依赖性密度泛函理论(TD-DFT)进行建模。该系列新染料的光伏性能的研究提供了它们的功率转换效率(PCE)与结构特征相关的结构性质关系,例如PI缀合间隔物的长度和取代基的性质嘧啶电子给体部分的上部(位置2和6)和下部(官方碳上的取代基)。虽然这些染料满足了基于TiO2的DSSC的有效敏化剂的标准,但发现它们的光伏性能取决于通过吡喃基亚基内的取代基控制的染料包装装置。在吡喃基乙烯片段的上部和下部和一个噻吩基PI-缀合的间隔物中,将含有苯基取代基的20A染料达到最高功率转化效率。

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