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中性氨 - 水团簇中自缔合与交叉缔合氢键之间的拔河比赛:通过分子剪裁方法获得的能量见解

A Tug of War between the Self- and Cross-associating Hydrogen Bonds in Neutral Ammonia-Water Clusters: Energetic Insights by Molecular Tailoring Approach.

作者信息

Patkar Deepak, Bharati Ahirwar Mini, Deshmukh Milind M

机构信息

Department of Chemistry, Dr. Harisingh Gour Vishwavidyalaya, (A Central University), 470003, Sagar, India.

出版信息

Chemphyschem. 2022 Dec 16;23(24):e202200476. doi: 10.1002/cphc.202200476. Epub 2022 Oct 17.

DOI:10.1002/cphc.202200476
PMID:36127809
Abstract

In the present work, the energies of various types of individual HBs observed in neutral (NH ) (H O) , (m+n=2 to 7) clusters were estimated using the molecular tailoring approach (MTA)-based method. The calculated individual HB energies suggest that the O-H…N HBs are the strongest (1.21 to 12.49 kcal mol ). The next ones are the O-H…O (3.97 to 9.30 kcal mol ) HBs. The strengths of N-H…N (1.09 to 5.29 kcal mol ) and N-H…O (2.85 to 5.56 kcal mol ) HBs are the weakest. The HB energies in dimers also follow this rank ordering. However, the HB energies in dimers are much smaller than those obtained by the MTA-based method due to the loss in cooperativity contribution in the dimers. Thus, the calculated cooperativity contributions, for different types of HBs, fall in the range 0.64 to 5.73 kcal mol . We wish to emphasize based on the energetic rank ordering obtained by the MTA-based method that the O-H of water is a better HB donor than the N-H of ammonia. The reasons for the observed energetic rank ordering are two folds: (i) intrinsically stronger O-H…N HBs than the O-H…O ones as revealed by dimer energies and (ii) the higher cooperativity contribution in the former than the later ones. Indeed, the MTA-based method is useful in providing the missing energetic rank ordering of various type of HBs in neutral (NH ) (H O) clusters, in the literature.

摘要

在本工作中,使用基于分子剪裁方法(MTA)的方法估算了在中性(NH)(H₂O)(m + n = 2至7)团簇中观察到的各种类型单个氢键(HB)的能量。计算得到的单个HB能量表明,O - H…N氢键最强(1.21至12.49 kcal·mol⁻¹)。其次是O - H…O(3.97至9.30 kcal·mol⁻¹)氢键。N - H…N(1.09至5.29 kcal·mol⁻¹)和N - H…O(2.85至5.56 kcal·mol⁻¹)氢键的强度最弱。二聚体中的HB能量也遵循此排序。然而,由于二聚体中协同作用贡献的损失,二聚体中的HB能量比基于MTA的方法得到的能量小得多。因此,计算得到的不同类型HB的协同作用贡献在0.64至5.73 kcal·mol⁻¹范围内。基于通过基于MTA的方法获得的能量排序,我们希望强调水的O - H是比氨的N - H更好的HB供体。观察到的能量排序的原因有两个:(i)如二聚体能量所示,O - H…N氢键本质上比O - H…O氢键更强;(ii)前者的协同作用贡献高于后者。实际上,基于MTA的方法有助于提供文献中中性(NH)(H₂O)团簇中各种类型HB缺失的能量排序。

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