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Fluorescence quantum yields were obtained in CH2Cl2 using the expression, φf, Asam/A ref) x (aref/asam) x (nsam/nref)2 x φf1, where Asam and A ref are the areas under the corrected fluorescence spectrum for sample and coumarin 1, asam and aref are the absorbances of sample and coumarin 1, nsam and n ref are the refractive indices for sample and reference, respectively, and φf1 is the quantum yield of coumarin 1 0.9, Vijila, C, Ramalingam, A. J. Mat. Chem. 2001, 11, 749
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85037004554
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Lippert-Mataga equation: (νa, νf, 2(μe, μg)2/hca3] x, ε, 1, 2ε, 1, n2, 1, 2n2, 1, K where νa and νf are the peak absorption and emission frequencies (cm-1, μe and μg are the dipole moment in the excited and ground state, h is the Planck's constant, c is the speed of light, a is the Onsager cavity radius, and K is a constant. The related equation: (νa, νf, 2(μe2, μg2)/hca 3] x, ε, 1, 2ε, 1, n2, 1, 2n2, 1, K' where K' is a constant
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2 + 1)] + K' where K' is a constant.
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