Vuai Said A H, Khalfan Mwanahadia Salum, Babu Numbury Surendra
Computational Quantum Chemistry Lab, Department of Chemistry, College of Natural and Mathematical Sciences, The University of Dodoma, Post Box: 338, Dodoma, Tanzania.
Heliyon. 2021 Nov 9;7(11):e08339. doi: 10.1016/j.heliyon.2021.e08339. eCollection 2021 Nov.
A series of six coumarin based dye derivatives were investigated and their geometry and optoelectronic properties elucidated for suitability in dye-sensitized solar cells (DSSCs) using TD-DFT/B3LYP with 6-31G basis set. D-π-A schemes were developed by attaching various donors and acceptors to coumarin dye (CM) to calculate changes in their photovoltaic properties. D2-CM-A2 and D4-CM-A4 showed less dihedral angle because of the low steric effect between donor and connector. The D1-CM-A1 and D2-CM-A2 results of intramolecular charge transfer were higher because of low bond length and a strong group of electron donors. The results revealed that LUMO energies of D1-CM-A1, D2-CM-A2, D3-CM-A3 and D4-CM-A4 were higher than the conduction band edge of TiO electrode (-4.0 eV) suggesting that these dyes will inject the electrons into the conduction band of the semiconductor. In addition, the light harvest efficiency (LHE), open-circuit voltage (V) and band energy gap (E) values are calculated in the gas phase, as well as in the solvent phase. This study shows that D1-CM-D1 and D2-CM-A2 derivatives have better properties for application in the DSSCs.
研究了一系列六种基于香豆素的染料衍生物,并使用TD-DFT/B3LYP方法和6-31G基组阐明了它们的几何结构和光电性质,以评估其在染料敏化太阳能电池(DSSC)中的适用性。通过将各种供体和受体连接到香豆素染料(CM)上,构建了D-π-A结构,以计算其光伏性质的变化。由于供体和连接体之间的空间位阻效应较小,D2-CM-A2和D4-CM-A4的二面角较小。由于键长较短且电子供体基团较强,D1-CM-A1和D2-CM-A2的分子内电荷转移结果较高。结果表明,D1-CM-A1、D2-CM-A2、D3-CM-A3和D4-CM-A4的最低未占分子轨道(LUMO)能量高于TiO电极的导带边缘(-4.0 eV),这表明这些染料将把电子注入半导体的导带。此外,还计算了气相和溶剂相中染料的光捕获效率(LHE)、开路电压(V)和带隙能量(E)值。该研究表明,D1-CM-D1和D2-CM-A2衍生物在DSSC应用中具有更好的性能。