Sum-over-States Calculation of the Specific Rotations of Some Substituted Oxiranes,
Chloropropionitrile, Ethane, and Norbornenone
Posted on 2006-12-28 - 00:00
A sum-over-states approach has been applied to the calculation of the specific rotations of several substituted
oxiranes, 2-chloropropionitrile, and 30°-rotated ethane. In each case, the first few excited states proved to
have only a relatively small effect on the calculated specific rotation. It was necessary to use a very large
number of excited states in order to achieve convergence with the results of the more direct linear response
method. However, the latter does not give information on which excited states are important in determining
the specific rotation. Norbornenone is unique in that its greatly enhanced specific rotation as compared to
norbornanone is associated with the low-energy n−π* transition. The CC bond orbitals interact with the
CO in the LUMO, and a density difference plot for going from the ground state to the first excited state
clearly shows the perturbation of the CC.
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Wiberg, Kenneth B.; Wang, Yi-gui; Wilson, Shaun M.; Vaccaro, Patrick H.; Cheeseman, James R. (2016). Sum-over-States Calculation of the Specific Rotations of Some Substituted Oxiranes,
Chloropropionitrile, Ethane, and Norbornenone. ACS Publications. Collection. https://doi.org/10.1021/jp0655221