Theoretical Investigations of Hydrogen Bonding Interactions of (E)-1-(1H-Benzo[d]imidazol-2-yl)-3-Phenylprop-2-en-1-one Momoners and Dimers: NBO, QTAIM and NCI Study

Adenidji Ganiyou, Kicho Denis Yapo, D. Zon, M. Koné
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引用次数: 1

Abstract

Hydrogen bonding is an essential interaction in nature and plays a crucial role in many formations of materials and biological processes, requiring a deeper understanding of its formation. Benzimidazole is an important structural unit found in a large number of natural and pharmacologically active molecules. In the present work, the electronic structures and properties and relatives stabilities of a series of (E)-1-(1H-benzo[d]imidazol-2-yl)-3-phenylprop-2-en-1-one monomers and dimers have been studied by density functional theory using B3LYP 6-31+G (d, p) calculation level. the strengths of the noncovalent interactions have been analyzed in terms of the QTAIM analysis, NCI analysis and natural bond orbital approaches. It was found that the dimers are formed by double N-H⋯O hydrogen bond. QTAIM analysis proved the presence of intramolecular hydrogen bond in monomers and coexistence of intramolecular and intermolecular hydrogen bond in dimers. Frequency analysis show that intermolecular N-H⋯O interactions are proper hydrogen bond while intramolecular C-H⋯N, C-H⋯O, C-H⋯H-C interactions are improper hydrogen bond. NBO and NCI analyses confirm the existence of hydrogen bonds in the studied monomers and dimers. The presence of weakly electron acceptor group on benzene ring favor the total interaction energy of dimerization.
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(E)-1-(1h -苯并[d]咪唑-2-基)-3-苯丙-2-烯-1- 1- 1单体和二聚体氢键相互作用的理论研究:NBO、QTAIM和NCI研究
氢键是自然界中必不可少的相互作用,在许多材料的形成和生物过程中起着至关重要的作用,需要对其形成有更深入的了解。苯并咪唑是一种重要的结构单元,存在于大量具有药理活性的天然分子中。本文采用密度泛函理论,采用b3lyp6 -31+G (d, p)计算水平,研究了一系列(E)-1-(1h -苯并[d]咪唑-2-基)-3-苯基丙-2-烯-1- 1单体和二聚体的电子结构、性质和相关稳定性。用QTAIM分析、NCI分析和自然键轨道方法分析了非共价相互作用的强度。发现二聚体是由双N-H⋯O氢键形成的。QTAIM分析证实了单体中存在分子内氢键,二聚体中存在分子内和分子间氢键。频率分析表明,分子间N- h⋯O相互作用是适当的氢键,而分子内C-H⋯N、C-H⋯O、C-H⋯H-C相互作用是不适当的氢键。NBO和NCI分析证实了所研究的单体和二聚体中存在氢键。苯环上弱电子受体基团的存在有利于二聚化反应的总相互作用能。
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