Theoretical analysis of singlet and triplet excited states of nickel porphyrins |
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Authors: | Patchkovskii Serguei Kozlowski Pawel M Zgierski Marek Z |
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Affiliation: | Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa K1A 0R6, Canada. |
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Abstract: | Local density and generalized gradient approximation time-dependent density functional methods have been used for calculation of the singlet and triplet excited states of nickel-porphine, Ni-tetraphenyloporphine, and Ni-octaethyloporphyrine. Special attention is paid to metal-ligand transitions and d-d transitions. It is shown that the lowest exited singlet states of the three compounds can be described as a transfer of an electron from the porphine ring to the d(x2-y2) orbital of the nickel atom. On the other hand, the lowest excited triplet state arises from promotion of an electron between two nickel d orbitals, an occupied d(z2) and an empty d(x2-y2). It is proposed that a rapid quenching of the excited singlet states is due to an ultrafast intersystem crossing between 1Eg)and 3Eg or 3B1g states. |
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