Calculation of smooth potential energy surfaces using local electron correlation methods

2006 | journal article

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​Calculation of smooth potential energy surfaces using local electron correlation methods​
Mata, R. A.   & Werner, H.-J.​ (2006) 
The Journal of Chemical Physics125(18) art. 184110​.​ DOI: https://doi.org/10.1063/1.2364487 

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Authors
Mata, Ricardo A. ; Werner, Hans-Joachim
Abstract
The geometry dependence of excitation domains in local correlation methods can lead to noncontinuous potential energy surfaces. We propose a simple domain merging procedure which eliminates this problem in many situations. The method is applied to heterolytic bond dissociations of ketene and propadienone, to SN2 reactions of Cl− with alkylchlorides, and in a quantum mechanical∕molecular mechanical study of the chorismate mutase enzyme. It is demonstrated that smooth potentials are obtained in all cases. Furthermore, basis set superposition error effects are reduced in local calculations, and it is found that this leads to better basis set convergence when computing barrier heights or weak interactions. When the electronic structure strongly changes between reactants or products and the transition state, the domain merging procedure leads to a balanced description of all structures and accurate barrier heights.
Issue Date
2006
Journal
The Journal of Chemical Physics 
ISSN
0021-9606
eISSN
1089-7690
Language
English

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