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Theoretical Design of Complex Molecule via Combination of Natural Lawsone and Synthetic Indoline D131 Dyes for Dye Sensitized Solar Cells Application

机译:天然罗森酮与合成吲哚D131染料结合用于染料敏化太阳能电池的复杂分子的理论设计

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The dye sensitized solar cells (DSSCs) have been extensively studied due to their low production cost and simple fabrication process. Dye co-sensitization broadens the absorption spectrum of the sensitizer; thus enhances light harvesting efficiency; and contributes to the improvement of the DSSCs overall efficiency. In this study we performed theoretical design of complex molecule (C_(45)H_(32)N_(2)O_(4)) through combination (esterification reaction) of the natural dye lawsone and synthetic metal free indoline dye D131. The excitation energies, vibration spectra, molecular structures, electronic absorption spectra and electron transitions in individual dyes and complex molecule were investigated using density functional theory (DFT) and time dependent density functional theory (TD-DFT) B3LYP5 methods, with 3-21G, 6-31G and 6-31G(d,p) basis sets. The UV-Vis absorption spectra of the individual dyes and their mixture in chloroform solution were measured using spectrophotometer. For the complex formation reaction, enthalpy, entropy and Gibbs free energy were calculated and the results indicated the reaction was endothermic and non-spontaneous. Electron density distribution of the frontier and adjacent molecular orbitals and energy levels alignment were used for analysis of the electronic spectra and mechanism of transitions. The results indicated that the designed complex molecule satisfied the requirements for good photosensitizer of DSSCs.
机译:染料敏化太阳能电池(DSSC)由于其较低的生产成本和简单的制造工艺而得到了广泛的研究。染料共敏化拓宽了敏化剂的吸收光谱;从而提高光收集效率;并有助于提高DSSC的整体效率。在这项研究中,我们通过天然染料法拉酮和不含合成金属的二氢吲哚染料D131的结合(酯化反应)进行了复杂分子(C_(45)H_(32)N_(2)O_(4)的理论设计。使用密度泛函理论(DFT)和时变密度泛函理论(TD-DFT)B3LYP5方法(3-21G)研究了单个染料和复杂分子中的激发能,振动谱,分子结构,电子吸收谱和电子跃迁。 6-31G和6-31G(d,p)基集。使用分光光度计测量单个染料及其混合物在氯仿溶液中的UV-Vis吸收光谱。对于复合物形成反应,计算了焓,熵和吉布斯自由能,结果表明该反应是吸热的和非自发的。前沿和相邻分子轨道的电子密度分布以及能级排列用于分析电子光谱和跃迁机理。结果表明,所设计的复杂分子满足了DSSCs良好光敏剂的要求。

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