首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhancement in the solar efficiency of a dye-sensitized solar cell by molecular engineering of an organic dye incorporating N-alkyl-attached 1,8-naphthalamide derivative
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Enhancement in the solar efficiency of a dye-sensitized solar cell by molecular engineering of an organic dye incorporating N-alkyl-attached 1,8-naphthalamide derivative

机译:掺入N-烷基附着的1,8-萘胺衍生物的有机染料的染料敏化太阳能电池太阳能效率的增强

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Controlling the orientation of the dye molecules adsorbed on the TiO2 surface needs extensive attention for improving the photovoltaic parameters of dye-sensitized solar cells (DSSCs). The suppression of the charge recombination and self-aggregation of dye molecules on the TiO2 surface also plays a vital role in the improvement of cell efficiency. In this report, based on the bi-anchored structure containing N-alkyl-attached 1,8-naphthalamide derivative as the donor system and spiroBiproDOT as the pi-spacer, an organic dimeric dye (D-Dye) was designed and synthesized by Suzuki coupling, followed by Knoevenagel condensation. The maximum power conversion efficiency of 7.1% with a V-oc and J(sc) of 0.70 V and 14.6 mA cm(-2), respectively, was achieved for the DSSC employing D-Dye. A monomeric dye (M-Dye) was also synthesized and the resultant cell efficiency of 4.85% was achieved with V-oc and J(sc) of 0.67 V and 9.93 mA cm(-2), respectively, which was 33% lower than that of its dimeric analogue (D-Dye). The photo-physical experiment was carried out for both organic dyes to understand their light absorption characteristics. The incident photon-to-current conversion efficiency (IPCE) and electrochemical impedance measurements were also obtained to rationalize the better photovoltaic performance of DSSCs employing the dimeric D-Dye, which was due to the effective suppression of the charge recombination and self-aggregation of dye molecules. The co-adsorption of D-Dye (0.4 mM) with N-719 (0.4 mM) in the ratio of 10 : 1 v/v (D-Dye:N-719) further enhanced the cell efficiency to 8.34% (V-oc of 0.77 V and J(sc) of 14.9 mA cm(-2)).
机译:控制吸附在TiO 2表面上的染料分子的取向需要广泛地注意改善染料敏化太阳能电池(DSSCs)的光伏参数。在TiO 2表面上的染料分子的电荷重组和自聚集的抑制也在提高细胞效率方面发挥着至关重要的作用。在本报告中,基于含有N-烷基附着的1,8-萘三烷衍生物的双锚式结构作为供体系统和螺纤维肽作为PI-垫片,通过Suzuki设计和合成了有机二聚体染料(D-染料)耦合,其次是Knoevenagel冷凝。对于使用D-染料的DSSC,可以分别为0.70V和14.6 mA cm(-2)的V-oc和j(sc)的最大功率转换效率。还合成了单体染料(M-染料),分别为0.67V和9.93mA cm(-2)的V-OC和J(SC)实现4.85%的所得细胞效率,比下降33%其二聚体类似物(D-染料)。为有机染料进行了光学物理实验,以了解它们的光吸收特性。还获得了事件的光子 - 电流转换效率(IPCE)和电化学阻抗测量,以合理化采用二聚体D-染料的DSSCs的更好的光伏性能,这是由于有效抑制电荷重组和自我聚集染料分子。与N-719(0.4mm)的D-染料(0.4mm)的共吸收为10:1V / V(D-染料:N-719)的比例进一步提高了细胞效率至8.34%(V- 0.77 V和J(SC)为14.9 mA cm(-2))。

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