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脂肪族多胺的结构拓扑偏好与质子化顺序:四胺三亚乙基四胺的理论案例研究

Structural-topological preferences and protonation sequence of aliphatic polyamines: a theoretical case study of tetramine trien.

作者信息

Adeyinka Adedapo S, Cukrowski Ignacy

机构信息

Department of Chemistry, Faculty of Natural and Agricultural Sciences, University of Pretoria, Lynnwood Road, Hatfield, 0002, Pretoria, South Africa.

出版信息

J Mol Model. 2015 Jun;21(6):162. doi: 10.1007/s00894-015-2709-y. Epub 2015 Jun 4.

DOI:10.1007/s00894-015-2709-y
PMID:26037149
Abstract

A large set of lowest and medium energy conformers of aliphatic tetramine trien was used to uncover structural-topological preferences of poliamines. Numerous common structural features among HL and H 2 L tautomers were identified, e.g., H-atoms of protonated functional groups are always involved in intramolecular NH•••N interactions and they result in as large and as many as possible rings in lowest energy conformers. Largest, 11-membered, molecular rings stabilize a molecule most and they appeared to be strain free whereas 5-memebred intramolecular rings were most strained (all formed due to NH•••N interactions). The CH•••HC interactions with QTAIM-defined atomic interaction lines were also found but, surprisingly, mainly in the lowest energy conformers of HL tautomers. According to the non-covalent interaction-based (NCI) analysis, 5-memebered rings formed by CH•••HC interactions are not strained and, in general, 3D NCI isosurfaces mimic those obtained for weaker NH•••N interactions. Also, 3D NCI isosurfaces found for NH•••N and CH•••HC interactions, regardless whether linked or not by an atomic interaction line, appeared to be indistinguishable. Using lowest energy conformers, theoretically predicted mixture of primary (HL p ) and secondary (HL s ) forms of trien was found to be in accord with the literature reports; using linear conformers resulted in predicting HL s as the only tautomer formed. In contrast to HF, the overall performance of B3LYP was found satisfactory for the purpose of the study.

摘要

使用一大组脂肪族四胺三烯的最低能量和中等能量构象异构体来揭示聚胺的结构拓扑偏好。在HL和H₂L互变异构体中鉴定出许多常见的结构特征,例如,质子化官能团的氢原子总是参与分子内NH∙∙∙N相互作用,并且它们在最低能量构象异构体中形成尽可能大且尽可能多的环。最大的11元分子环对分子的稳定性最高,并且似乎没有应变,而5元分子内环的应变最大(均由NH∙∙∙N相互作用形成)。还发现了与QTAIM定义的原子相互作用线的CH∙∙∙HC相互作用,但令人惊讶的是,主要存在于HL互变异构体的最低能量构象异构体中。根据基于非共价相互作用(NCI)的分析,由CH∙∙∙HC相互作用形成的5元环没有应变,并且一般来说,3D NCI等值面模仿了较弱的NH∙∙∙N相互作用所获得的等值面。此外,无论是否通过原子相互作用线连接,NH∙∙∙N和CH∙∙∙HC相互作用的3D NCI等值面似乎都无法区分。使用最低能量构象异构体,理论预测的三烯一级(HLp)和二级(HLs)形式的混合物与文献报道一致;使用线性构象异构体则预测HLs是唯一形成的互变异构体。与HF相反,发现B3LYP的整体性能对于该研究目的而言是令人满意的。

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