DFT and TD-DFT study of novel triphenylamine based organic dyes for dye-sensitized solar cells

A. Slimi, M. Hachi, A. Fitri, A. Benjelloun, M. Benzakour, M. Mcharfi
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引用次数: 1

Abstract

Dye Sensitized Solar Cells (DSSC) are a low-cost alternative to our renewable energy sources in recent decades because they have a potential to achieve high power conversion efficiency (PCE) and their devices are easy to manufacture. For a better understanding of the charge transport process involved in the DSSCs, we studied the effect of conjugation on the electron structure and optical properties of triphenylamine derivatives, we carried out a theoretical study on six organic dyes synthesized by Yu et al. In this work, we studied the effect of different substituents on the electronic and optical properties of six triphenylamine dyes using quantum chemistry methods such as DFT and TDDFT. These calculations were undertaken by the functional hybrid exchange and correlation B3LYP and the base 6-31G (d, p). This model allowed us to determine the optimized structures and the electronic and optical properties (EHOMO, ELUMO, Egap, $\lambda_{abs}$, Voc….) Of various dyes studied. We note that the dye P6 exhibits the lowest gap energy and reasonable Voc value. We also simulated the UV-visible spectrum by using the TD-DFT with two functionals CAM-B3LYP and WB97XD to give a look for their effect on optical properties introducing the effect of the solvent (THF). Our results show that the six studied dyes absorb in the visible and are a good promising choice for DSSCs.
染料敏化太阳能电池用新型三苯胺基有机染料的DFT和TD-DFT研究
染料敏化太阳能电池(DSSC)是近几十年来可再生能源的低成本替代品,因为它们具有实现高功率转换效率(PCE)的潜力,而且它们的设备易于制造。为了更好地理解DSSCs中的电荷输运过程,我们研究了共轭对三苯胺衍生物电子结构和光学性质的影响,我们对Yu等人合成的六种有机染料进行了理论研究。本文采用量子化学方法(DFT和TDDFT)研究了不同取代基对六种三苯胺染料的电子和光学性质的影响。这些计算是由B3LYP和碱基6-31G (d, p)的功能杂化交换和相关进行的。该模型使我们能够确定优化的结构和电子和光学性质(EHOMO, ELUMO, Egap, $\lambda_{abs}$, Voc....)。各种染料的研究。我们注意到染料P6具有最低的间隙能和合理的Voc值。我们还利用具有CAM-B3LYP和WB97XD两个官能团的TD-DFT模拟了紫外可见光谱,并引入了溶剂(THF)的影响,研究了它们对光学性质的影响。结果表明,所研究的六种染料在可见光下的吸收是一种很有前途的DSSCs选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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