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Aromaticity of a-Oligothiophenes and Equivalent Oligothienoacenes

机译:A-寡核蛋白和等同的寡核苷酸的芳香性

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The aromaticity and the degree of|D-electronic delocalization have been theoretically investigated for|A, |A'-linked oligothiophenes containing three and five rings and for their fused analogs oligothienoacenes. By computing magnetic susceptibilities and 1H NMR shieldings as well as current density maps, it is found that the fused oligomers are more aromatic than the corresponding nonfused partners. The increase of aromaticity with the size of the oligomer-even in the case of quinoidal forms-is also proven. The|D-currents induced by an external magnetic field show that oligothienoacenes behave as single cycles since they present an intense diamagnetic current flowing around the whole molecular perimeter. In contrast, nonfused|A-oligothiophenes exhibit diamagnetic currents localized over each thiophene ring. For the quinoidal oligomers, local diamagnetic|D vortices appear around CC double bonds, indicating that the|D electrons are rather localized as in conjugated, nonaromatic polyenes. For quinoidal nonathienoacene, it is however found that the electronic circulation around the ethylenic bonds tends to delocalize all over the carbon skeleton, indicating a more effective|D-conjugation and some aromatic character.
机译:芳香性和D-Electronic Delocalization的理论上是含有三个和五环的A的A'-连接的寡核烯烃,以及它们的熔融类似物寡核苷酸。通过计算磁性敏感性和1H NMR屏蔽以及电流密度图,发现融合的低聚物比相应的非粘合剂更芳香。也证明,甚至在奎体形式的情况下,均匀的芳香度的增加也被证明。由外部磁场诱导的D-Currents表明,寡核苷酸的表现为单次循环,因为它们呈现出围绕整个分子周长流动的强烈的抗磁电流。相反,非刚性|α-寡核蛋白在每个噻吩环上展示了局部的抗磁电流。对于Quinoidal低聚物,CC双键围绕CC双键出现局部抗磁性涡流,表明| D电子相当定位,如缀合的非芳族聚烯物中。然而,对于Quinoidal非脱硫乙烯,发现烯键键周围的电子循环倾向于在碳骨架上划分,表明更有效的缀合和一些芳族特征。

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    Institute de Ciencia Molecular Universidad de Valencia P.O. Box 22085 E-46071 Valencia Spain and Dipartimento di Chimica Universita degli Studi di Modena e Reggio Emilia via Campi 183 41100 Modena Italy;

    Institute de Ciencia Molecular Universidad de Valencia P.O. Box 22085 E-46071 Valencia Spain and Dipartimento di Chimica Universita degli Studi di Modena e Reggio Emilia via Campi 183 41100 Modena Italy;

    Institute de Ciencia Molecular Universidad de Valencia P.O. Box 22085 E-46071 Valencia Spain and Dipartimento di Chimica Universita degli Studi di Modena e Reggio Emilia via Campi 183 41100 Modena Italy;

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  • 中图分类 化学键的量子力学理论;
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