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Ab initio study of hydrogen bond complexes of ring compounds containing the H2N-C=Y moiety with water

机译:从头开始研究含H2N-C = Y部分的环化合物与水的氢键配合物

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Ab initio calculations, including natural charge population and natural resonance theory analyses, have been carried out to study the two-way effects between hydrogen bonds (H-bonds) and the intramolecular resonance effect by using the H-bonded complexes of ring compounds containing the H2N-C=Y moiety (C=Y bond is contained in the six-membered or five-membered rings) with water as models. The amino groups in the four monomers of ring compounds (FAYs, Y represents the heavy atoms in the substituent groups, =CH, =N, =SiH, and =P, respectively) can all serve as H-bond donors (HD) and H-bond acceptors (HA) to form stable H-bonded complexes with water. The HD H-bond and resonance effect enhance each other (positive two-way effects) whereas the HA H-bond and resonance effect weaken each other (negative two-way effects). The resonance effect in FAY(1) (C=Y bond is contained in the six-membered rings) is weaker than that in formamide, and those in FAY(2) and FAY(3) (C=Y bonds are contained in the fivemembered rings). The two-way effects between H-bond and resonance effect exist in the H-bonded complexes of ring compounds containing the H2N-C=Y moiety with water.
机译:已经进行了从头算计算,包括自然电荷总体和自然共振理论分析,以研究氢键(H键)之间的双向效应和分子内共振效应,方法是使用含有氢键的环化合物的氢键配合物以水为模型的H 2 N-C = Y部分(C = Y键包含在六元或五元环中)。环化合物的四个单体中的氨基(FAY,Y表示取代基中的重原子,分别为= CH,= N,= SiH和= P)都可以充当H键供体(HD)和氢键受体(HA)与水形成稳定的氢键复合物。 HD H键和共振效应彼此增强(正双向效应),而HA H键和共振效应彼此弱化(负双向效应)。 FAY(1)(六元环中包含C = Y键)的共振效应比甲酰胺弱,而FAY(2)和FAY(3)(C = Y键包含在六元环中)的共振效应较弱。五元环)。在含有H 2 N-C = Y部分的环化合物与水的H键结合的配合物中,存在H键和共振效应之间的双向作用。

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