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Tuning the BODIPY core for its potential use in DSSC: a quantum chemical approach

机译:调整Bodipy核心在DSSC中的潜在用途:量子化学方法

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摘要

Boron dipyrromethene (BODIPY) is a highly promising candidate for use in dye-sensitized solar cell (DSSC), because of its attractive absorption characteristics such as strong extinction coefficients in the visible and near-IR ranges (70000-80000 M-1 cm(-1)), large quantum yields, longer excited-state lifetime and also high solubility in many organic solvents. Moreover, the absorption peaks can be shifted towards longer wavelengths when functionalized at suitable positions of the BODIPY core. Herein, on the basis of density functional theory (DFT) and time-dependent DFT, we provide the opto-electronic properties of BODIPY core-functionalized dyes to see their applicability in organic DSSC. Our systematic analyses reveal that the 2,6 substituted dyes show better photovoltaic properties compared to the 3,5 substituted ones. On the basis of empirical relationship, we have also calculated the photo-induced electron injection times of some dye-TiO2 composites, which seem to be in the ultrafast time scale, thus rendering them a promising candidate for DSSC applications. Our theoretical studies provide that judiciously designed BODIPY core-derived dyes show certain unique spectroscopic and electronic features that make them highly advantageous in DSSC applications as compared to other organic dyes.
机译:硼己酮(BODIPY)是一种高度有前途的候选者,用于染料敏化太阳能电池(DSSC),因为其具有迷人的吸收特性,如可见和接近IR范围内的强光消光系数(70000-80000 m-1 cm( -1)),大量子产率,更长的激发 - 状态寿命和许多有机溶剂中的高溶解度。此外,吸收峰可以在在Bypipy芯的合适位置官能化时向较长波长移动。这里,在密度函数理论(DFT)和时间依赖性DFT的基础上,我们提供了Bodipy核心官能化染料的光电性质,以便在有机DSSC中看到它们的适用性。我们的系统分析表明,与3,5取代的染料相比,2,6取代的染料显示出更好的光伏性能。在经验关系的基础上,我们还计算了一些染料-TiO2复合材料的光诱导的电子注射时间,这似乎处于超快时间尺度,从而使其成为DSSC应用的有希望的候选者。我们的理论研究提供了明智地设计的Bodipy核心衍生的染料,显示出某些独特的光谱和电子特征,其在与其他有机染料相比,在DSSC应用中使它们具有高度有利的。

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