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Ground and excited state CASPT2 geometry optimizations of small organic molecules

โœ Scribed by Christopher S. Page; Massimo Olivucci


Publisher
John Wiley and Sons
Year
2003
Tongue
English
Weight
135 KB
Volume
24
Category
Article
ISSN
0192-8651

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โœฆ Synopsis


Abstract

A method for computing secondโ€order multiconfigurational perturbation theory (CASPT2) energy gradients numerically has been implemented and applied to a range of elementary organic chromophores, including 1,3 butadiene, acrolein, and two protonated Schiff bases. Geometries of ground and excited statesโ€”as well as conical intersectionsโ€”are compared with the corresponding CASSCF structures, illustrating the effect of including the correction for dynamical electron correlation. It is shown that the differences between the two methods are not readily categorized, but that, while individual changes in bond lengths can be quite large (โˆผ0.01โ€“0.02 ร…), the natures and CASPT2 energetics of the structures remain similar. Exceptions to this tend to be systems that have a strong ionic character and that are not well described at the CASSCF level. Basis set effects (doubleโ€ vs. tripleโ€ฮถ) were examined for a limited number of examples, and found to be quite dramatic at both levels of theory. ยฉ 2003 Wiley Periodicals, Inc. J Comput Chem 24: 298โ€“309, 2003


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