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首页> 外文期刊>Journal of molecular modeling >Energy level gamut-a wide-angle lens to look at photoelectronic properties of diketopyrrolopyrrole-benzothiadiazole-based small molecules
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Energy level gamut-a wide-angle lens to look at photoelectronic properties of diketopyrrolopyrrole-benzothiadiazole-based small molecules

机译:能级色域 - 一种广角镜头,看看直酮吡咯吡咯 - 苯并噻唑基小分子的光电性质

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Demands in the field of molecular design for optimized bandgap and proper energy levels to obtain high efficiencies are growing progressively in organic electronics. In the present work, we designed a series of molecules based on diketopyrrolopyrrole (DPP) and benzothiadiazoles (BT). We also studied the efeect of the presence and position of the nitrogen atom as an effective heteroatom. Finally, we optimized the energy levels of the designed structures to find the most favorable donor properties along with fullerene and non-fullerene (NF) acceptors in bulk heterojunction (BHJ) solar cell systems. To shed new light on the electronic characteristics of the designed structures, we developed a correction gamut of the highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) energy levels. The gamut is a span that predicts the occurrence of practical HOMO or LUMO with high probability from density functional theory computations in the gas phase. The model was validated using experimental energy level values of a similar structure as reference material. The results obtained by the new pathway of combining the idea of energy level gamuts with the modified Scharber model for NF BHJ suggested that the designed structures can afford power conversion efficiencies (PCE) for NF-BHJ of 8.5-10.5%.
机译:优化带隙的分子设计领域的要求和适当的能级以获得高效的能量水平在有机电子中逐渐生长。在本作工作中,我们设计了一系列基于二酮吡咯(DPP)和苯并噻唑(BT)的分子。我们还研究了氮原子的存在和位置作为有效杂原子的效果。最后,我们优化了设计的结构的能量水平,以找到最有利的供体性以及散装异质结(BHJ)太阳能电池系统中的富勒烯和非富勒烯(NF)受体。为了揭示设计结构的电子特性,我们开发了最高占用的分子轨道(HOMO)和最低未占用的分子轨道(LUMO)能级的矫正色域。色域是一种跨度,其预测实际同性恋或LUMO的发生,其具有来自气相中的密度功能理论计算的高概率。使用与参考材料类似结构的实验能级值进行验证该模型。通过结合能量水平域的新途径获得的结果与NF BHJ改进的肖格模型相结合的新途径建议,设计的结构可以为NF-BHJ的功率转换效率(PCE)为8.5-10.5%。

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