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Influence of conjugation axis on the optical and electronic properties of aryl-substituted benzobisoxazoles

机译:共轭轴对芳基取代的苯并二恶唑的光学和电子性质的影响

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摘要

Six different 2,6-diethyl-4,8-diarylbenzo[1,2-d:4,5-d′]bis(oxazoles) and four different 2,4,6,8-tetraarylbenzobisoxazoles were synthesized in two steps: a Lewis acid catalyzed orthoester cyclization followed by a Suzuki or Stille cross-coupling with various arenes. The influence of aryl group substitution and/or conjugation axis variation on the optical and electronic properties of these benzobis(oxazole) (BBO) compounds was evaluated. Structural modifications could be used to alter the HOMO, LUMO, and band gap over a range of 1.0, 0.5, and 0.5 eV, respectively. However, depending on the location and identity of the substituent, the HOMO level can be altered without significantly impacting the LUMO level. This is supported by the calculated frontier molecular orbitals. Our results indicate that the FMOs and band gaps of benzobisoxazoles can be readily modified either jointly or individually.
机译:通过两个步骤合成了六个不同的2,6-二乙基-4,8-​​二芳基苯并[1,2-d:4,5-d']双(恶唑)和四个不同的2,4,6,8-四芳基苯并二恶唑路易斯酸催化原酸酯环化,然后与各种芳烃进行Suzuki或Stille交叉偶联。评估了芳基取代和/或共轭轴变化对这些苯并双(恶唑)(BBO)化合物的光学和电子性质的影响。结构修改可用于分别在1.0、0.5和0.5 eV的范围内更改HOMO,LUMO和带隙。然而,取决于取代基的位置和特性,可以改变HOMO能级而不会显着影响LUMO能级。这由计算出的前沿分子轨道来支持。我们的结果表明,苯并二恶唑的FMO和带隙可以容易地联合或单独修饰。

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