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Electron delocalization in homoconjugated 7,7-diarylnorbornane systems: A computational and experimental study

机译:均共轭7,7-二芳基降冰片烷体系中的电子离域:计算和实验研究

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摘要

A joint computational-experimental study has been carried out to analyze the homoconjugative interactions in 7,7-diarylnorbornane (DPN) derivatives. The experimentally observed new bands in their UV/Vis have been accurately assigned by means of TD-DFT calculations. Both experimental data and computations show that aromatic homoconjugation in acyclic systems is an effective mechanism for electron delocalization that resembles the situation described for polyphenylenes and polyenes. The effective homoconjugation length in homoconjugated oligomers is in the range of 6-7 aryl rings. The effect of substituents directly attached to the para carbon atom of the DPN moiety have been also studied. We found that the HOMO→LUMO vertical transitions can indeed be modified by the nature of the aromatic substituents in order to provoke dramatic changes in the electronic properties (i.e., in the absorption spectra) of the studied species.
机译:进行了一项联合计算-实验研究,以分析7,7-二芳基降冰片烷(DPN)衍生物中的同共轭相互作用。通过TD-DFT计算,已准确分配了实验观察到的UV / Vis新波段。实验数据和计算结果均表明,无环体系中的芳香族均共轭是一种有效的电子离域机制,类似于聚苯和多烯所描述的情况。均共轭低聚物中的有效均共轭长度在6-7个芳基环范围内。还研究了直接连接在DPN部分对位碳原子上的取代基的作用。我们发现,HOMO→LUMO垂直转变的确可以通过芳族取代基的性质进行修饰,以引起所研究物种的电子性质(即,在吸收光谱中)的急剧变化。

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