Article ID Journal Published Year Pages File Type
9578480 Chemical Physics Letters 2005 6 Pages PDF
Abstract
Density functional theory along with the time-dependent formalism (TD-DFT) are used to directly localise the stationary points in the A˜1B2 first singlet excited state of tropolone. The optimisation reveals that the equilibrium geometry of tropolone in the excited state is planar, a result that seems in contradiction with recent analysis using the high-resolution degenerate four-wave mixing technique that finds a large inertial defect. A theoretical evaluation of the vibrational modes reveals the presence of a very small out-of-plane frequency that could also account for the observed large inertial defect. CASSCF and CASPT2 results validate the TD-DFT method to deal with excited intramolecular proton-transfer reactions.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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