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Coordinate reduction for exploring chemical reaction paths
Authors:Adam?B.?Birkholz,H.?Bernhard?Schlegel  author-information"  >  author-information__contact u-icon-before"  >  mailto:hbs@chem.wayne.edu"   title="  hbs@chem.wayne.edu"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:(1) Department of Chemistry, Wayne State University, Detroit, MI 48202, USA;
Abstract:The potential energy surface for the reaction of a typical molecular system composed of N atoms is defined uniquely by 3N-6 coordinates. These coordinates can be defined by the Cartesian coordinates of the atomic centers (minus overall translation and rotation), or a set of internally defined coordinates such as bond stretches, angle bends, and torsions. By applying principal component analysis to the geometries along a reaction path, a reduced set of coordinates, d ≪ 3N-6, can be obtained. This reduced set of coordinates can reproduce the changes in geometry along the reaction path with chemical accuracy and may help improve the efficiency of reaction path optimization algorithms.
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