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线性顺式、反式环三氮烷簇(n = 2 - 8)中氢键和分子间相互作用性质的理论研究

Theoretical study of properties of H bonds and intermolecular interactions in linear cis-,trans-cyclotriazane clusters (n = 2-8).

作者信息

Song Hua-Jie, Xiao He-Ming, Dong Hai-Shan

机构信息

Department of Chemistry, Nanjing University of Science and Technology, China.

出版信息

J Chem Phys. 2006 Feb 21;124(7):74317. doi: 10.1063/1.2170079.

Abstract

Our calculations based upon Becke's three-parameter functional of density-functional theory (DFT) with the correlation of Lee, Yang, and Parr (B3LYP), natural bond orbital, and atoms in molecule indicate that in drastic contrast to most H-bonded systems, the anticooperative and cooperative effects coexist in the linear H-bonded cis-,trans (c,t)-cyclotriazane clusters (n = 2-8). As cluster size increases, the properties along the H-bonded chains at trans-positions take on the unexpectedly anticooperative changes which are reflected in elongation of the N...H hydrogen bonds, frequency blueshift in the N-H stretching vibrations, decay in the n(N)-->sigma*(N-H) charge transfers, and weakening of strengths of the N...H bonds. And the cooperative changes in the corresponding properties for the cis- H-bonded chains are observed to be concurrent with the anticooperativities. The rise and fall in the n(N)-->sigma*(N-H) interactions cause increment and decrement in capacities of the clusters to concentrate electrons at the bond critical points of the N...H bonds, and thereby leading to the cooperative and the anticooperative changes especially in the N...H lengths and the N-H stretching frequencies. In terms of three-body symmetry-adapted perturbation theory (three-body SAPT), the first exchange nonadditivity plays a more important role in stabilizing trimer than the nonadditive induction. However, the dominance of the first exchange nonadditivity in three-body interaction unexpectedly triggers the anticooperative effect that counteracts the concurrent cooperative effect. According to the SAPT(DFT), which is a combination of SAPT with asymptotically corrected DFT, DFT/B3LYP is able to succeed in describing the electrostatic, exchange, and induction components, but fails to yield satisfactory interaction energies due to the fact that about 40% of short-range dispersion energy is neglected by the DFT, which is different from many H-bonded described well by the DFT. A quantum cluster equilibrium model illustrates that the c,t-cyclotriazane liquid phase exhibits a weak cooperative effect.

摘要

我们基于密度泛函理论(DFT)的Becke三参数泛函以及Lee、Yang和Parr的相关性(B3LYP)、自然键轨道和分子中的原子进行的计算表明,与大多数氢键系统形成鲜明对比的是,反协同效应和协同效应在直线型氢键连接的顺式、反式(c,t)-环三氮烷簇(n = 2 - 8)中共存。随着簇尺寸的增加,反式位置上沿氢键链的性质呈现出意外的反协同变化,这体现在N...H氢键的伸长、N - H伸缩振动的频率蓝移、n(N)→σ*(N - H)电荷转移的衰减以及N...H键强度的减弱。并且观察到顺式氢键链相应性质的协同变化与反协同变化同时发生。n(N)→σ*(N - H)相互作用的增减导致簇在N...H键的键临界点处集中电子的能力的增减,从而导致特别是在N...H长度和N - H伸缩频率方面的协同和反协同变化。根据三体对称适配微扰理论(三体SAPT),首次交换非加和性在稳定三聚体方面比非加和诱导起更重要的作用。然而,首次交换非加和性在三体相互作用中的主导地位意外地引发了反协同效应,抵消了同时存在的协同效应。根据SAPT(DFT),即SAPT与渐近校正DFT的组合,DFT/B3LYP能够成功描述静电、交换和诱导成分,但由于DFT忽略了约40%的短程色散能,未能产生令人满意的相互作用能,这与许多被DFT很好描述的氢键不同。一个量子簇平衡模型表明,c,t - 环三氮烷液相表现出弱协同效应。

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