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On the rate of radiationless intermolecular energy transfer

机译:On the rate of radiationless intermolecular energy transfer

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The effects of higher multipole interactions (up to electric quadrupolendash;quadrupole) and small exchange contributions on the rate of intermolecular energy transfer are examined. Secondhyphen;order Coulombic interactions are described within a molecular quantum electrodynamical framework. A correction due to a small firsthyphen;order exchange mechanism is then proposed. It is concluded that use of the multipole expansion in the interaction Hamiltonian is not always a good approximation at interchromophore separations of less than about 10 Aring;. This is attributed to a combination of large molecular dimensions compared to intermolecular separation, and wave function overlap effects. For larger separations, the interaction is described well by the usual dipolar coupling formalism. The inclusion of small exchange effects in a simplistic model at small to intermediate separations demonstrates the likelihood of a substantially greater rate of energy transfer than that predicted by either a Fouml;rsterhyphen;type (dipolendash;dipole) or a purely exchangehyphen;type mechanism. The relevance to the photophysics of multichromophoric systems, such as aromatic polymers, is discussed.

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