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Acene-Modified Triphenylamine Dyes for Dye-Sensitized Solar Cells: A Computational Study

机译:acene-modified Triphenylamine Dyes for Dye-sensitized solar Cells: a Computational study

摘要

A series of metal-free acene-modified triphenylamine dyes (benzene to pentacene, denoted as TPA-AC1 to TPA-AC5) are investigated as organic sensitizers for application in dye-sensitized solar cells (DSSCs). A combination of density functional theory (DFT), density functional tight-binding (DFTB), and time-dependent DFT (TDDFT) approaches is employed. The effects of acene units on the spectra and electrochemical properties of the acene-modified TPA organic dyes are demonstrated. The dye/(TiO2)46 anatase nanoparticle systems are also simulated to show the electronic structures at the interface. The results show that from TPA-AC1 to TPA-AC5 with increasing sizes of the acenes, the absorption and fluorescence spectra are systematically broadened and red-shifted, but the oscillator strength and electron injection properties are reduced. The molecular orbital contributions show increasing localization on the bridging acene units from TPA-AC1 to TPA-AC5. From the theoretical examination of some key parameters including free enthalpy related to the electron injection, light-harvesting efficiency, and the shift of semiconductor conduction band, TPA-AC3 with an anthracene moiety demonstrates a balance of the above crucial factors. TPA-AC3 is expected to be a promising dye with desirable energetic and spectroscopic parameters in the DSSC field, which is consistent with recent experimental work. This study is expected to deepen our understanding of TPA-based organic dyes and assist the molecular design of new metal-free dyes for the further optimization of DSSCs.
机译:研究了一系列无金属的并苯改性的三苯胺染料(苯至并五苯,表示为TPA-AC1至TPA-AC5)作为有机敏化剂,用于染料敏化太阳能电池(DSSC)。结合使用密度泛函理论(DFT),密度泛函紧密绑定(DFTB)和时间依赖DFT(TDDFT)方法。证明了并苯单元对并苯改性的TPA有机染料的光谱和电化学性能的影响。还模拟了染料/(TiO2)46锐钛矿纳米粒子系统,以显示界面处的电子结构。结果表明,从TPA-AC1到TPA-AC5随着乙炔尺寸的增加,吸收光谱和荧光光谱得到系统地加宽和红移,但振荡器的强度和电子注入性能降低。分子轨道的贡献显示从TPA-AC1到TPA-AC5的并并苯单元上的定位增加。通过对一些关键参数的理论检验,包括与电子注入有关的自由焓,光收集效率以及半导体导带的移动,具有蒽部分的TPA-AC3证明了上述关键因素之间的平衡。 TPA-AC3有望成为有前途的染料,在DSSC领域具有理想的能量和光谱参数,这与最近的实验工作是一致的。这项研究有望加深我们对基于TPA的有机染料的理解,并有助于新型无金属染料的分子设计,以进一步优化DSSC。

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