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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Quantum chemical investigation of modified coumarin-based organic efficient sensitizers for optoelectronic applications
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Quantum chemical investigation of modified coumarin-based organic efficient sensitizers for optoelectronic applications

机译:用于光电应用改性香豆素有机高效敏化剂的量子化学研究

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One of the most major features in the improvement of dye-sensitized solar cells (DSSCs) is the survey and plan of high-efficiency and low-cost dyes. In this paper, a new series of metal-free coumarin-based (NKX-2311) dye molecules, namely (D1-D4) are investigated for use in DSSC applications. The dye molecules contain three parts, electron-donor (D) connected by the pi-conjugated linker as a spacer and electron-acceptor (A)/anchoring group. Molecular structure, electronic absorption spectra and photovoltaic (PV) parameters of the D1-D4 dyes have been performed by using density functional theory (DFT) and time-dependent DFT (TD-DFT) approaches are employed. The effects of chemical modification on the spectra and PV properties of the coumarin-modified organic dyes have been revealed. The performance of three functionals (B3LYP, CAM-B3LYP and omega B97XD) has been evaluated to get an experimental absorption wavelength of NKX-2311. From the functionals, B3LYP method was better matched with the absorption wavelength of NKX-2311. Therefore, D1-D4 dye molecules excited state calculations of the absorption spectra have been investigated by using B3LYP functional with 6-31G(d) basis set. The results show that D1, D3 dyes are smaller energy gap and absorption spectra are systematically red-shifts. The theoretical results have a display that the lowest occupied molecular orbitals (LUMOs) and highest occupied molecular orbitals (HOMOs) of the D1-D4 dyes can be confirming positive response on the electron injection and dye regeneration process. The NLO property of the D1-D4 dyes can be derived as polarizability and first-order hyperpolarizability. The calculated values of D1 and D3 dyes are the best applicants for NLO performance. The conclusion of this study will deliver a useful reference to the future proposal and beneficial to get DSSCs with superior power conversion efficiency (PCE).
机译:改善染料敏化太阳能电池(DSSCs)的最大特征之一是高效率和低成本染料的调查和计划。本文研究了一种新的无金属香豆素基(NKX-2311)染料分子,即(D1-D4)用于DSSC应用。染料分子含有三个部分,通过PI-缀合的接头连接的电子给体(D)作为间隔物和电子 - 受体(A)/锚固基团。通过使用密度泛函理论(DFT)和采用时间依赖性DFT(TD-DFT)方法进行D1-D4染料的分子结构,电子吸收光谱和光伏(PV)参数。已经揭示了化学改性对香豆素改性有机染料的光谱和PV性质的影响。已经评估了三个功能(B3LYP,CAM-B3LYP和OMEGA B97XD)的性能以获得NKX-2311的实验吸收波长。从功能,B3LYP方法与NKX-2311的吸收波长更好地匹配。因此,通过使用6-31g(d)基础设定的B3LYP功能,研究了D1-D4染料分子的激发态计算吸收光谱。结果表明,D1,D3染料是较小的能隙,并且吸收光谱系统的系统地是红移。理论结果表明,D1-D4染料的最低占用分子轨道(LUMOS)和最高占用的分子轨道(HOMOS)可以证实对电子注入和染料再生过程的阳性反应。 D1-D4染料的NLO性能可以推导为极化性和一阶超极化性。 D1和D3染料的计算值是NLO性能的最佳申请者。本研究的结论将对未来的提案提供有用的提及,并有利于获得具有卓越电源转换效率(PCE)的DSSC。

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