Issue 38, 2006

Theoretical study on stabilities of multiple hydrogen bonded dimers

Abstract

A series of self-constituted multiple hydrogen bonded (MHB) complexes has been investigated systematically by density functional theory (PBE1PBE /6-31G**), the Morokuma energy decomposition method (HF/6-31G**) and MP2 (6-31G** and 6-311++G**) calculation. We have discovered that (i) for doubly hydrogen bonded (DHB) complexes, both the interaction energy and stability increase with the charge transfer energy; (ii) for quadruple hydrogen bonded (QHB) complexes, cooperativity is the most important factor determining stability of the complex: stronger cooperative energy correlates well with larger interaction energy and thus more stable complex and vice versa; (iii) correlation energy plays an important role in intermolecular interactions. The correlation energy, mainly consisting of dispersive energy, also exhibits cooperativity in MHB dimers: positive for M-aadd and generally negative for other complexes.

Graphical abstract: Theoretical study on stabilities of multiple hydrogen bonded dimers

Article information

Article type
Paper
Submitted
30 Jun 2006
Accepted
11 Aug 2006
First published
23 Aug 2006

Phys. Chem. Chem. Phys., 2006,8, 4427-4433

Theoretical study on stabilities of multiple hydrogen bonded dimers

W. Xu, X. Li, H. Tan and G. Chen, Phys. Chem. Chem. Phys., 2006, 8, 4427 DOI: 10.1039/B609278K

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