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首页> 外文期刊>Orbital : the Electronic Journal of Chemistry >Um Estudo Químico-quantico da Covalência Intermolecular em Sistemas Estabilizados por Liga??es de Hidrogênio π???H e N???H: Cálculos DFT, ChelpG, NBO e QTAIM
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Um Estudo Químico-quantico da Covalência Intermolecular em Sistemas Estabilizados por Liga??es de Hidrogênio π???H e N???H: Cálculos DFT, ChelpG, NBO e QTAIM

机译:用氢键πH和N稳定的系统中分子间价的化学定量研究:DFT,ChelpG,NBO和QTAIM计算

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In this work, density functional calculations at BHandHLYP/6-311++G(d,p) theoretical level of structural parameters, electronic properties and vibration modes of the C2H2???HCN???HF and C2H4???HCN???HF T-shaped hydrogen complexes is presented. As is well-known, the formation of these complexes is ruled by weak and strong hydrogen bonds recognized as p???H and N???H, respectively. In line with this interaction strength, a correlation between the structural modifications and frequency shifts was investigated, although the non-covalent character of these complexes has been unveiled through the QTAIM calculations. The absorption intensity ratios of the proton donors correlate well with the charge transfer amounts, whose values were computed through the ChelpG approach. Even by taking into account the cooperative profile of these systems, the hydrogen bond energies were determined, and actually, the values are unapproachable to be distributed in different moieties, such as punctual strong hydrogen bonds possessing covalent character, if exist. At last, the NBO calculations were applied to compute the s- and p-contributions on the hybrid orbitals in order to explain the frequency shifts on the H–C and H–F proton donor bonds.?DOI: http://dx.doi.org/10.17807/orbital.v1i1.705
机译:在这项工作中,以BHandHLYP / 6-311 ++ G(d,p)的密度泛函计算C2H2·HCN·HF和C2H4·HCN·HCN的结构参数,电子性能和振动模式的理论水平。给出了HF T-形氢配合物。众所周知,这些配合物的形成是由分别被识别为p -6 H和N -6 H的弱和强氢键决定的。根据这种相互作用强度,尽管通过QTAIM计算揭示了这些配合物的非共价特征,但研究了结构修饰和频移之间的相关性。质子供体的吸收强度比与电荷转移量密切相关,电荷转移量的值通过ChelpG方法计算得出。即使考虑到这些系统的协同作用,也可以确定氢键能,实际上,这些值无法分布在不同的部分,例如具有共价特性的点状强氢键(如果存在)。最后,NBO计算被用于计算杂化轨道上的s和p贡献,以解释HC和HF质子供体键上的频移。DOI:http:// dx。 doi.org/10.17807/orbital.v1i1.705

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