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Using redundant internal coordinates to optimize equilibrium geometries and transition states

Journal of Computational Chemistry · 1996 · Vol. 17(1) · pp. 49–56
Chunyang PengPhilippe Y. AyalaH. Bernhard SchlegelMichael J. Frisch

Abstract

A redundant internal coordinate system for optimizing molecular geometries is constructed from all bonds, all valence angles between bonded atoms, and all dihedral angles between bonded atoms. Redundancies are removed by using the generalized inverse of the G matrix; constraints can be added by using an appropriate projector. For minimizations, redundant internal coordinates provide substantial improvements in optimization efficiency over Cartesian and nonredundant internal coordinates, especially for flexible and polycyclic systems. Transition structure searches are also improved when redundant coordinates are used and when the initial steps are guided by the quadratic synchronous transit approach. © 1996 by John Wiley & Sons, Inc.

Organic Chemistry Cycloaddition ReactionsChemical Reaction MechanismsVarious Chemistry Research TopicsDihedral angleLog-polar coordinatesCartesian coordinate systemBipolar coordinatesAction-angle coordinatesQuadratic equationGeographic coordinate conversionGeneralized coordinatesOrthogonal coordinatesCylindrical coordinate system

Funding

  • National Science Foundation
Citations
2,725
FWCI
30.23
field-weighted impact
References
25
Percentile
100%
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Citations per year
References
General methods for geometry and wave function optimization
The Journal of Physical Chemistry · 1992 · 2,564 citations
Conditioning of quasi-Newton methods for function minimization
Mathematics of Computation · 1970 · 3,602 citations
A family of variable-metric methods derived by variational means
Mathematics of Computation · 1970 · 3,092 citations
An algorithm for the location of transition states
Journal of Computational Chemistry · 1986 · 1,493 citations
Optimization of equilibrium geometries and transition structures
Journal of Computational Chemistry · 1982 · 3,857 citations
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