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探索甲酸和甲酰胺二聚体的相对热力学稳定性——低频氢键振动的作用

Exploring Relative Thermodynamic Stabilities of Formic Acid and Formamide Dimers - Role of Low-Frequency Hydrogen-Bond Vibrations.

作者信息

Cato Michael A, Majumdar D, Roszak Szczepan, Leszczynski Jerzy

机构信息

Interdisciplinary Center for Nanotoxicity, Jackson State University , Jackson, Mississippi 39217, United States.

Institute of Physical and Theoretical Chemistry, Wroclaw University of Technology , Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.

出版信息

J Chem Theory Comput. 2013 Feb 12;9(2):1016-26. doi: 10.1021/ct300889b. Epub 2013 Jan 22.

Abstract

The low-frequency fundamentals together with the high-frequency modes, responsible for hydrogen bonding (OH/NH stretching modes), were analyzed to correlate the intensities with the hydrogen-bond strengths/binding energies of the formic acid and formamide dimers using Møller-Plesset second-order perturbation (MP2) and coupled cluster computations with explicit anharmonicity corrections. Linear correlations were observed for both the formic acid and formamide dimers, and as consequence of such correlation an additive properties of binding energies with respect to the local hydrogen-bond energies of fragments involved (for these dimers) has been proposed. It has been further observed that (i) the nature of their six low-frequency fundamentals are very similar, and (ii) the in-plane bending and stretch-bend fundamentals of different dimers of these two species (depending on the dimer structure), in this low-frequency region, modulate their strength of hydrogen-bond/binding hence their relative stability order. These results were further verified against the results from Gaussian-G4-MP2 (G4MP2), Gaussian-G2-MP2 (G2MP2), and complete basis set (CBS-QB3) methods of high accuracy energy calculations.

摘要

利用莫勒-普莱塞特二阶微扰(MP2)以及带有显式非谐性校正的耦合簇计算方法,对负责氢键作用(OH/NH伸缩模式)的低频基频以及高频模式进行了分析,以关联甲酸和甲酰胺二聚体的强度与氢键强度/结合能。对于甲酸和甲酰胺二聚体均观察到了线性相关性,并且基于这种相关性,提出了结合能相对于所涉及片段(对于这些二聚体)的局部氢键能的加和性质。进一步观察到:(i)它们六个低频基频的性质非常相似;(ii)在这个低频区域,这两种物质不同二聚体的面内弯曲以及伸缩-弯曲基频(取决于二聚体结构)调节它们的氢键/结合强度,从而调节它们的相对稳定性顺序。针对高精度能量计算的高斯-G4-MP2(G4MP2)、高斯-G2-MP2(G2MP2)以及完全基组(CBS-QB3)方法所得结果,对这些结果进行了进一步验证。

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