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TD-DFT Investigations on Optoelectronic Properties of Fluorescein Dye Derivatives in Dye-Sensitized Solar Cells (DSSCs)

机译:荧光素染料衍生物在染料敏化太阳能电池(DSSCs)中的TD-DFT研究

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This research work was conducted to investigate the structural, molecular, electronic, and photophysical parameters of the fluorescein dye derivatives using the density functional theory (DFT) and time dependent-density functional theory (TD-DFT) computations. The organic donor-π-acceptor dye used for dye-sensitized solar cells, based on 2-(3-hydroxy-6-oxo-6H-xanthene-9-yl)benzoic acid (fluorescein) and its five derivatives, was investigated. The derivatives were formed by attaching different donor groups at para position. The excited state energies, electron absorption spectra, and oscillator strengths (f) were calculated using TD-DFT/B3LYP/6-311G basis set calculations on fully DFT-optimized geometries. The HOMO orbital, LUMO orbital, and energy gap values show that fluorescein attached with thiophene (FST) compound has a smaller energy gap compared to others and the fluorescein attached with an amine (FSA) have a larger energy gap than all compounds. The increasing order of the energy gap between HOMO and LUMO for the fluorescein and its derivatives is FST??FSE??FSM??FS??FSO??FSA. In terms of electron injection efficiency, it was found that the FST has higher electron injection efficiency compared with other derivatives. In addition, light-harvesting efficiencies (LHEs) were calculated and the results showed that the FST has the highest LHE value. It is therefore suggested that FST has better properties for application in DSSC according to the result obtained.
机译:进行该研究,以研究利用密度泛函理论(DFT)和时间依赖性密度泛函(TD-DFT)计算的荧光素染料衍生物的结构,分子,电子和光物理参数。研究了用于染料敏化太阳能电池的有机供体-π-受体染料,基于2-(3-羟基-6-氧代-6H- XantheNe-9-基)苯甲酸(荧光素)及其五种衍生物。通过在Para位置附着不同的供体基团来形成衍生物。使用TD-DFT / B3LYP / 6-311G对完全DFT优化的几何形状计算计算激发状态能量,电子吸收光谱和振荡器强度(F)。 HOMO轨道,LUMITO和能隙值表明,与其他噻吩(FST)化合物附着的荧光素具有较小的能隙,并且用胺(FSA)附着的荧光素具有比所有化合物更大的能隙。 HOMO和LUMO之间的能隙的增加顺序为荧光素及其衍生物是FST?<?FSE?<?FSM?<?FSO?<?FSA。就电子注入效率而言,发现与其他衍生物相比,FST具有更高的电子注入效率。此外,计算了光收获效率(筒),结果表明FST具有最高的LHE值。因此,建议FST根据获得的结果,FST在DSSC中具有更好的应用。

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