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Theoretical Study of the Effect of Introducing pi-Conjugation and/or an Electron Withdrawing Unit in a Heteroleptic Dual-Electron Donor-Based Dye Sensitizer

机译:在基于多电子除电子剂的染料敏化剂中引入π共轭和/或电子吸收单元的效应的理论研究

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In this study, three triphenylamine (TPA)-based dye sensitizers with phenothiazine (PTZ) and TPA as dual-electron donors, benzothiadiazole (BTD) as an electron withdrawing unit, and cyanoacetic acid as an electron acceptor (dye1, dye2, dye3, dye4) were designed and investigated. To decrease the energy band gap of dye1, we added pi-conjugation between the PTZ donor and the TPA donor in dye1 and/or BTD between the TPA and thiophen in dye1. Using density functional theory (DFT) and time-dependent DFT (TD-DFT) calculations, we gained insight into the factors responsible for photovoltaic performance. Due to the different energy band gaps of each dye, the absorption spectra of the dyes each showed a different form. Among the dyes, dye4 showed the most red-shifted and broadest absorption spectra. It is expected that dye4 would have better photovoltaic properties than the others. This work indicates that adding pi-conjugation or a withdrawing unit into dye would result in good photovoltaic properties for dye-sensitized solar cells (DSSCs).
机译:在这项研究中,以吩噻嗪(PTZ)和TPA为双电子供体,苯并噻二唑(BTD)为吸电子单元和氰基乙酸为电子受体的三种三苯胺(TPA)基染料敏化剂(染料1,染料2,染料3,染料4)被设计和研究。为了减少染料1的能带隙,我们在染料1的PTZ供体和TPA供体之间添加了π共轭,和/或在染料1的TPA和噻吩之间添加了BTD。使用密度泛函理论(DFT)和时变DFT(TD-DFT)计算,我们深入了解了影响光伏性能的因素。由于每种染料的能带隙不同,每种染料的吸收光谱显示出不同的形式。在染料中,dye4显示出最大的红移和最宽的吸收光谱。可以预期,染料4将具有比其他染料更好的光电性能。这项工作表明,在染料中添加π共轭或抽出单元会为染料敏化太阳能电池(DSSC)带来良好的光伏性能。

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