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首页> 外文期刊>Journal of Molecular Modeling >Conformational and electronic (AIM/NBO) study of unsubstituted A-type dimeric proanthocyanidin
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Conformational and electronic (AIM/NBO) study of unsubstituted A-type dimeric proanthocyanidin

机译:未取代的A型二聚体原花色素的构象和电子(AIM / NBO)研究

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摘要

The conformational space of the unsubstituted A-type dimeric proanthocyanidin was scanned using molecular dynamics at a semiempirical level, and complemented with functional density calculations. The lowest energy conformers were obtained. Electronic distributions were analysed at a higher calculation level, thus improving the basis set. A topological study based on Bader’s theory (AIM: atoms in molecules) and natural bond orbital (NBO) framework was performed. Furthermore, molecular electrostatic potential maps (MEPs) were obtained and analysed. NMR chemical shifts were calculated at ab initio level and further compared with previous experimental values; coupling constants were also calculated. The stereochemistry of the molecule is thoroughly discussed, revealing the key role that hyperconjugative interactions play in defining experimental trends. These results show the versatility of geminal spin–spin coupling 2J(C-1′,O) as a probe for stereochemical studies of proanthocyanidins.
机译:使用半经验水平的分子动力学扫描未取代的A型二聚原花色素的构象空间,并辅以功能密度计算。获得了最低能量的构象异构体。电子分布在较高的计算水平上进行了分析,从而改善了基础集。进行了基于Bader理论(AIM:分子中的原子)和自然键轨道(NBO)框架的拓扑研究。此外,获得并分析了分子静电势图(MEP)。从头算计算NMR化学位移,并与先前的实验值进一步比较;还计算了耦合常数。对该分子的立体化学进行了详尽的讨论,揭示了超共轭相互作用在定义实验趋势中的关键作用。这些结果表明,双原体自旋-自旋偶合2 J(C-1',O)的多功能性可作为原花色素的立体化学研究的探针。

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