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Organic Dyes Containing Coplanar Dihexyl-Substituted Dithienosilole Groups for Efficient Dye-Sensitised Solar Cells

机译:含有共面二烷基取代的二硫脲基团的有机染料,用于高效染料敏化太阳能电池

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摘要

A chromophore containing a coplanar dihexyl-substituted dithienosilole (CL1) synthesised for use in dye-sensitised solar cells displayed an energy conversion efficiency of 6.90% under AM 1.5 sunlight irradiation. The new sensitiser showed a similar fill factor and open-circuit voltage when compared with N719. Impedance measurements showed that, in the dark, the charge-transfer resistance of a cell using CL1 in the intermediate-frequency region was higher compared to N719 (69.8 versus 41.3 Omega). Under illumination at AM 1.5G-simulated conditions, the charge-transfer resistances were comparable, indicative of similar recombination rates by the oxidised form of the redox couple. The dye showed instability in ethanol solution, but excellent stability when attached to TiO2. Classical molecular dynamics indicated that interactions between ethanol and the dye are likely to reduce the stability of CL1 in solution form. Time-dependent density functional theory studies were performed to ascertain the absorption spectrum of the dye and assess the contribution of various transitions to optical excitation, which showed good agreement with experimental results.
机译:含有用于染料敏化太阳能电池的共面二己基取代的二苯甲酰(Cl1)的发色团显示在AM 1.5阳光照射下的能量转换效率为6.90%。与N719相比,新敏感剂显示出类似的填充因子和开路电压。阻抗测量表明,在暗中,与N719相比,在中间频率区域中使用CL1的电池的电荷转移电阻较高(69.8与41.3ω)。在AM 1.5G仿真条件下的照明下,电荷转移电阻可相当,指示通过氧化还原耦合的氧化形式的类似重组率。染料在乙醇溶液中显示出不稳定性,但在连接到TiO 2时稳定性优异。经典分子动力学表明,乙醇与染料之间的相互作用可能降低CL1在溶液形式中的稳定性。进行时间依赖性密度函数理论研究,以确定染料的吸收光谱,并评估各种过渡到光学激发的贡献,表明与实验结果良好。

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    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Limerick Dept Chem Sci SFI Strateg Res Cluster Solar Energy Convers Limerick Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Ecole Polytech Fed Lausanne LPI CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne LPI CH-1015 Lausanne Switzerland;

    Univ Limerick Dept Chem Sci SFI Strateg Res Cluster Solar Energy Convers Limerick Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

    Univ Coll Dublin UCD Sch Chem &

    Bioproc Engn SFI Strateg Res Cluster Solar Energy Convers Dublin 4 Ireland;

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  • 正文语种 eng
  • 中图分类 物理化学计量;
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