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Multiconfiguration molecular mechanics algorithm for potential energy surfaces of chemical reactions.

Authors :
Kim, Yongho
Corchado, José C.
Villa, Jordi
Xing, Jianhua
Truhlar, Donald G.
Source :
Journal of Chemical Physics; 2/8/2000, Vol. 112 Issue 6, 7 Charts, 15 Graphs
Publication Year :
2000

Abstract

We present an efficient algorithm for generating semiglobal potential energy surfaces of reactive systems. The method takes as input molecular mechanics force fields for reactants and products and a quadratic expansion of the potential energy surface around a small number of geometries whose locations are determined by an iterative process. These Hessian expansions might come, for example, from ab initio electronic structure calculations, density functional theory, or semiempirical molecular orbital theory. A 2x2 electronic diabatic Hamiltonian matrix is constructed from these data such that, by construction, the lowest eigenvalue of this matrix provides a semiglobal approximation to the lowest electronically adiabatic potential energy surface. The theory is illustrated and tested by applications to rate constant calculations for three gas-phase test reactions, namely, the isomerization of 1,3-cis-pentadiene, OH+CH[sub 4]→H[sub 2]O+CH[sub 3], and CH[sub 2]Cl+CH[sub 3]F→CH[sub 3]Cl+CH[sub 2]F. © 2000 American Institute of Physics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219606
Volume :
112
Issue :
6
Database :
Complementary Index
Journal :
Journal of Chemical Physics
Publication Type :
Academic Journal
Accession number :
4411154
Full Text :
https://doi.org/10.1063/1.480846