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首页> 外文期刊>The Journal of Chemical Physics >Cooperatibe effects,strengths of hydrogen bonds,and intermolecular interactions in circular cis,frans-cyclotriazane clusters (n=3-8)
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Cooperatibe effects,strengths of hydrogen bonds,and intermolecular interactions in circular cis,frans-cyclotriazane clusters (n=3-8)

机译:环状顺式,反式-环己烷簇中的协同作用,氢键强度和分子间相互作用(n = 3-8)

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摘要

Based on Becke's three parameter functional [J.Chem.Phys.98,5648 (1993)]of density functional theory (DFT)with the correlation of Lee-Yang-Parr [Phys.Rev.B 37,785 (1988)](DFT/B3LYP),the natural bond orbital (NBO)analysis,the Bader's theory of atoms in molecule (AIM),our calculations indicate that as cluster size (n)increases,the n-dependent cooperative changes in the lengths of the N...H H bonds (HBs)and N-H bonds,the N-H stretching frequencies and intensities,and the n(N)->sigma~*(N-H)charge transfers are observed to be pervasive in the circular cis,trans-cyclotriazane clusters (n=3-8),which is very different from the linear cis,frans-cyclotriazane clusters reported in previous work.According to the NBO and AIM theories,the cooperativity of the intermolecular n(N)->sigma~*(N-H)interaction leads to the n-dependent N...H contractions.In this way,the stronger N...H bond is formed,as reflected in the increase in their rho(r_(cp))values.This increased electron density is translated into the improved capacity to concentrate electrons at the HB bond critical point (BCP),i.e.,a higher potential energy V(r_(cp)).On the other hand,stronger repulsion is also activated to counteract the contraction,which is reflected in the increased G(r_(cp))value that gives the tendency of the system to dilute electrons at the HB BCP.In terms of the three-body symmetry-adapted perturbation theory (three-body SAPT),the induction nonadditivity accounts for up to 97% of the nonadditive energy in the circular trimer.It can believed that the marked cooperativity of the n(N)-> sigma~*(N-H)interactions is of nonadditive induction in nature.The N...H formation and nature of cooperativity in the circular clusters differ from those in the linear clusters that have been reported previously.According to the SAPT(DFT)method which is a combination of SAPT with the asymptotically corrected DFT,the cis,trans-cyclotriazane systems should contain remarkable dispersion interactions.However,the short-range dispersion cannot be reproduced thoroughly by DFT/B3LYP.A quantum cluster equilibrium model illustrates the neglected dispersion energies and the nonadditive energies can affect markedly the properties of the liquid consisting of the circular clusters.
机译:基于Becke的密度泛函理论(DFT)的三参数函数[J.Chem.Phys.98,5648(1993)]和Lee-Yang-Parr的相关性[Phys.Rev.B 37,785(1988)](DFT / B3LYP),自然键轨道(NBO)分析,分子中原子的巴德理论(AIM),我们的计算表明,随着团簇大小(n)的增加,N长度的n依赖性协同变化...观察到HH键(HBs)和NH键,NH的延伸频率和强度以及n(N)-> sigma〜*(NH)电荷转移在顺式,反式-环三氮烷环状簇中普遍存在(n = 3 -8),这与以前的工作中报道的线性顺式,反式-环三氮烷簇非常不同。根据NBO和AIM理论,分子间n(N)-> sigma〜*(NH)的相互作用导致通过这种方式,形成了更强的N ... H键,这反映在其rho(r_(cp))值的增加上。这种增加的电子密度被转化为增强了将电子集中在HB键临界点(BCP)的能力,即更高的势能V(r_(cp))。另一方面,还激活了较强的斥力来抵消收缩,这反映在增大的G(r_(cp))值使系统趋向于在HB BCP处稀释电子。根据三体对称自适应扰动理论(三体SAPT),感应非可加性达到圆形三聚体中97%的非加性能量可以认为,n(N)-> sigma〜*(NH)相互作用的显着协同作用本质上是非加性感应的。圆形簇中的协同性不同于先前报道的线性簇中的协同性。根据SAPT(DFT)方法,它是SAPT与渐近校正的DFT的组合,顺式,反式-环三氮烷体系应包含显着的分散相互作用但是,短程显示DFT / B3LYP不能完全重现这一点。量子簇平衡模型说明了被忽略的分散能,非添加能显着影响由圆形簇组成的液体的性质。

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