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Water-processed self-assembles of monolayers as interface modifier for ZnO/P3HT hybrid solar cells

机译:单层的水处理自组装体作为ZnO / P3HT混合太阳能电池的界面改性剂

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摘要

Benzoic acid based molecules were used for surface modification of ZnO nanorods as self-assembled monolayers (SAMs) in order to improve the interface interaction between ZnO and poly(3-hexylthiophene) in hybrid solar cells. The dipole moment of the molecules and the solvent used for the surface modification were investigated in relation to the performance of the hybrid devices. A linear relationship between the dipole moment of the interface modifiers and the open-circuit voltage (Voc) of the devices were found. The Voc are enhanced by the use of the molecules with their dipole moment pointing away from the ZnO surface and vice versa. The enhancement in Voc is attributed to the shift of the vacuum level of ZnO when the surface is modified with the SAMs. When water was used as the solvent for surface modification process, aggregate was found in the solution state. This implies an ordered orientation of SAMs attached onto the ZnO surface, resulting in the improvement of the Voc. An enhancement in the incident photon to current efficiency spectra was also obtained in the devices prepared from aqueous solution. The SAMs prepared from aqueous solution have better charge collecting properties in comparison with that prepared from ethanol solution.
机译:基于苯甲酸的分子被用作自组装单分子膜(SAMs),用于ZnO纳米棒的表面修饰,以改善混合太阳能电池中ZnO和聚(3-己基噻吩)之间的界面相互作用。研究了分子的偶极矩和用于表面改性的溶剂与混合装置的性能有关。发现界面修饰剂的偶极矩与器件的开路电压(Voc)之间存在线性关系。通过使用分子偶极矩指向远离ZnO表面的分子来增强Voc,反之亦然。 Voc的增加归因于当用SAM修饰表面时ZnO真空度的变化。当使用水作为表面改性过程的溶剂时,在溶液状态下发现聚集体。这意味着附着在ZnO表面上的SAM有序排列,从而改善了Voc。由水溶液制备的器件中,入射光子对电流效率谱的增强也得到了增强。与由乙醇溶液制备的SAM相比,由水溶液制备的SAM具有更好的电荷收集性能。

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