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Effects of electronegative substitution on the optical and electronic properties of acenes and diazaacenes

机译:负电取代对苯并二氮杂并丁光学和电子性质的影响

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Large acenes, particularly pentacenes, are important in organic electronics applications such as thin-film transistors. Derivatives where CH units are substituted by sp2 nitrogen atoms are rare but of potential interest as charge-transport materials. In this article, we show that pyrazine units embedded in tetracenes and pentacenes allow for additional electronegative substituents to induce unexpected redshifts in the optical transitions of diazaacenes. The presence of the pyrazine group is critical for this effect. The decrease in transition energy in the halogenated diazaacenes is due to a disproportionate lack of stabilization of the HOMO on halogen substitution. The effect results from the unsymmetrical distribution of the HOMO, which shows decreased orbital coefficients on the ring bearing chlorine substituents. The more strongly electron-accepting cyano group is predicted to shift the transitions of diazaacenes even further to the red. Electronegative substitution impacts the electronic properties of diazaacenes to a much greater degree than expected.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:在有机电子应用中,例如薄膜晶体管中,大并苯,尤其是并苯是重要的。 CH单元被sp2氮原子取代的衍生物很少见,但作为电荷传输材料可能引起人们的兴趣。在本文中,我们显示嵌入四碳烯和并戊酮中的吡嗪单元允许其他负电取代基在二氮杂并丁酮的光学跃迁中诱导意外的红移。吡嗪基的存在对于该作用至关重要。卤代二氮杂蒽中跃迁能的降低是由于HOMO对卤素取代的稳定作用不成比例地缺乏所致。该效应是由于HOMO的不对称分布引起的,该分布在带有氯取代基的环上显示出降低的轨道系数。预计电子接受度更高的氰基会进一步将二氮杂蒽的过渡转变为红色。负电取代对二氮杂蒽的电子性能的影响比预期的要大得多。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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