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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Effect of Tetrahydroquinoline Dyes Structure on the Performance of Organic Dye-Sensitized Solar Cells
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Effect of Tetrahydroquinoline Dyes Structure on the Performance of Organic Dye-Sensitized Solar Cells

机译:四氢喹啉染料结构对有机染料敏化太阳能电池性能的影响

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Eleven novel donor acceptor -conjugated (D--A) organic dyes have been engineered and synthesized as sensitizers for the application in dye-sensitized solar cells (DSSCs). The electron-donating moieties are substituted tetrahydroquinoline, and the electron-withdrawing parts are cyanoacrylic acid group or cyanovinylphosphonic acid group. Different lengths of thiophene-containing conjugation moieties (thienyl, thienylvinyl, and dithieno[3,2-b;2',3'-d]thienyl) are introduced to the molecules and serve as electron spacers. Detailed investigation on the relationship between the dye structure, photophysical and photoelectrochemical properties, and performance of DSSCs is described here. The bathochromic shift and increase of the molar extinction coefficient of the absorption spectrum are achieved by introduction of larger conjugation moiety. Even small structural changes of dyes result in significant changes in redox energies and adsorption manner of the dyes on TiO_2 surface, affecting dramatically the performance of DSSCs based on these dyes. The higher performances are obtained by DSSCs based on the rigid dye molecules, C2 series dyes (Figure 1), although these dyes have lower light absorption abilities relative to other dyes. A maximum solar-to-electrical energy conversion efficiency () of 4.53% is achieved under simulated AM 1.5 irradiation (100 mW/cm~2) with a DSSC based on C2-2 dye (Voc = 597 mV, Jsc = 12.00 mA/cm~2, ff = 0.63). Density functional theory (DFT) calculations have been performed on the dyes, and the results show that electron distribution from the whole molecules to the anchoring moieties occurred during the HOMO-LUMO excitation. The cyanoacrylic acid groups or cyanovinylphosphonic acid group are essentially coplanar with respect to the thiophene units, reflecting the strong conjugation across the thiophene-anchoring groups.
机译:已经设计并合成了11种新型的供体受体共轭(D--A)有机染料作为敏化剂,用于染料敏化太阳能电池(DSSC)。给电子部分是取代的四氢喹啉,吸电子部分是氰基丙烯酸基团或氰基乙烯基膦酸基团。将不同长度的含噻吩的共轭部分(噻吩基,噻吩基乙烯基和二噻吩并[3,2-b; 2',3'-d]噻吩基)引入分子中并用作电子间隔基。这里描述了染料结构,光物理和光电化学特性与DSSC性能之间关系的详细研究。通过引入较大的共轭部分,可实现红移和吸收光谱的摩尔消光系数的增加。即使是很小的染料结构变化,也会导致氧化还原能量和染料在TiO_2表面上的吸附方式发生重大变化,从而极大地影响了基于这些染料的DSSC的性能。通过DSSC基于刚性染料分子C2系列染料(图1)可获得更高的性能,尽管这些染料相对于其他染料具有较低的光吸收能力。使用基于C2-2染料的DSSC(Voc = 597 mV,Jsc = 12.00 mA / V)在模拟AM 1.5辐照(100 mW / cm〜2)下实现的最大太阳能转换效率()为4.53% cm〜2,ff = 0.63)。对染料进行了密度泛函理论(DFT)计算,结果表明在HOMO-LUMO激发过程中发生了从整个分子到锚定部分的电子分布。氰基丙烯酸基团或氰基乙烯基膦酸基团相对于噻吩单元基本上是共面的,反映了跨越噻吩固定基团的强共轭。

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