Modulation on Dye/TiO2 Bending Energy and Charge Transfer to High Performance Triphenylamine Based Sensitizers in Solar Cells: A DFT Study

Zakaria Mohyi Eddine Fahim, Youssef Ait Aicha, S. Bouzzine, M. Bouachrine, M. Hamidi
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引用次数: 1

Abstract

In this paper, dye sensitized solar cells (DSSCs) based on triphenylamine-thiophene are investigated by using density functional computations. The main focus is on the C214 and C215 dyes and their resulting bridged free and adsorbed molecules on the semiconductor (TiO2)9, during the electron injection process. The optimized geometry of the molecule and complexes are calculated by using B3LYP/6-31G(d)//(base LANL2DZ for the titan atoms) level, in order to investigate the effect of the expansion, or bridging the thiophenic pi-conjugated spacer by the C(CH3)2 donor group on the adsorption energies, charge distribution, electron transfer and electronic parameters of the resulting dye. The computational results suggest that our bridging process promotes the adsorption on the semiconductor (TiO2)9 of the dyes having the bridged donor group close to the surface of (TiO2)9 C214-B, C215-D bridge dyes by a reinforcement of the donating as well as accepting electrons character, respectively, of the donor part (TPA-thiophenesbridged) and cyanoacrylic acid. This study may help to understand well the details of the electron transfer mechanism between the dye and the TiO2 semiconductor in DSSC dye solar cells.
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太阳能电池中染料/TiO2弯曲能和电荷转移到高性能三苯胺基敏化剂的调制:DFT研究
本文采用密度泛函方法研究了基于三苯胺-噻吩的染料敏化太阳能电池(DSSCs)。在电子注入过程中,主要关注C214和C215染料及其在半导体(TiO2)9上的桥接和吸附分子。利用B3LYP/6-31G(d)//(泰坦原子的碱基LANL2DZ)水平计算了分子和配合物的优化几何结构,以研究C(CH3)2给基对噻吩偶联吡啶的扩展或桥接对所得染料的吸附能、电荷分布、电子转移和电子参数的影响。计算结果表明,我们的桥接工艺通过加强给电子部分(tpa -噻吩桥接)和氰丙烯酸的给电子和接受电子性质,促进了靠近(TiO2)9表面的桥接给基的染料在半导体(TiO2)9上的吸附。该研究有助于更好地理解DSSC染料太阳能电池中染料与TiO2半导体之间的电子转移机理的细节。
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