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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Tuning Near-Infrared Absorbing Donor Materials: A Study of Electronic, Optical, and Charge-Transport Properties of aza-BODIPYs
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Tuning Near-Infrared Absorbing Donor Materials: A Study of Electronic, Optical, and Charge-Transport Properties of aza-BODIPYs

机译:调整近红外吸收供体材料:AZA-Bodipys的电子,光学和电荷运输性能研究

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摘要

The class of 4,4'-difluoro-4-bora-3a,4a,8-triaza-s-indacenes (aza-BODIPYs) are promising near-infrared absorber materials which are successfully used in organic solar cells to extend their absorption to the near-infrared regime. We computationally studied electronic properties, internal reorganization energies, and the optical properties of more than 100 promising candidates and derived design principles, including novel functionalization routes, to improve their performance as donor materials. We synthesized and characterized several of the promising molecules, confirming the predicted trends. The best charge transport properties and absorption characteristics are obtained for naphthalene-annulated molecular cores due to optimally delocalized frontier molecular orbitals. Further optimization can be achieved by alpha-functionalization with fluorinated groups, beta-functionalization with accepting substituents, and modification of the borondifluoride group. For such molecules, we predict a bathochromic shift in the absorption, which should not significantly reduce the open-circuit voltage. Torsional restriction of alpha-substituents by carbon bridges can further improve both charge transport and absorption. The theoretically and experimentally observed independence of most of the functionalization BODIPYs an ideal material class for tailor-made absorber materials that can cover a broad range of absorption, charge transport, and energetic regimes, calling for further exploration in organic solar cell applications, fluorescence microscopy, and photodynamic therapy.
机译:4,4'-二氟-4-硼-3a,4a,8-triaza-s-incacenes(aza-bodipys)的类是有前途的近红外吸收材料,该材料成功地用于有机太阳能电池以延长其吸收近红外制度。我们在计算上研究了电子特性,内部重组能量,以及100多个有希望的候选者和推导设计原则的光学性质,包括新型官能化路线,以改善其作为供体材料的性能。我们合成并表征了几个有前途的分子,确认了预测的趋势。由于最佳地分子化的前沿分子轨道,获得最佳电荷传输性能和吸收特性。通过用氟化基团,β-官能化与接受取代基的β-官能化和改性,可以实现进一步的优化,以及硼钨基的修饰。对于这些分子,我们预测吸收中的碱度变化,这不应显着降低开路电压。碳桥的α-取代基的扭转限制可以进一步改善电荷传输和吸收。理论上和实验观察到大多数官能化Bodipys的独立性是用于量身定制的吸收材料的理想材料类,可涵盖广泛的吸收,电荷运输和能量制度,要求在有机太阳能电池应用中进行进一步探索,荧光显微镜和光动力治疗。

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