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0002294960
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In this bimolecular regime, back energy transfer via the short-range Dexter mechanism may equally be unfavorable due to diffusion of the molecular components
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Castellano, F. N.; Ruthkodsky, M.; Meyer, G. J. Inorg. Chem. 1995, 34, 3. In this bimolecular regime, back energy transfer via the short-range Dexter mechanism may equally be unfavorable due to diffusion of the molecular components.
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Castellano, F.N.1
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19
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34848881876
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The highest energy vibronic component of the 77 K emission appears at 690 nm.
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The highest energy vibronic component of the 77 K emission appears at 690 nm.
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20
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0141454957
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(a) Siddique, Z. A.; Yamamoto, Y.; Ohno, T.; Nozaki, K. Inorg. Chem. 2003, 42, 6366.
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(c) Shaw, G. B.; Grant, C. D.; Shirota, H.; Castner, E. W., Jr.; Meyer, G. J.; Chen, L. X. J. Am. Chem. Soc. 2007, 129, 2147.
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23
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0346880470
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This short component was previously ascribed to ligand reorganization after ultrarapid intersystem crossing as with ruthenium analogues; spin-orbit coupling constants of ruthenium and copper d-electrons being similar 990 vs 829 cm-1, e.g, Gunaratne, T, Rodgers, M. A. J, Felder, D, Nierengarten, J.-F, Accorsi, G, Armaroli, N. Chem. Commun. 2003, 3010
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-1); e.g., Gunaratne, T.; Rodgers, M. A. J.; Felder, D.; Nierengarten, J.-F.; Accorsi, G.; Armaroli, N. Chem. Commun. 2003, 3010.
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24
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34848883054
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Population of the 3MLCT state may receive some contribution from the higher singlet states; see ref 12
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3MLCT state may receive some contribution from the higher singlet states; see ref 12.
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25
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0037473121
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Maubert, B.; McClenaghan, N. D.; Indelli, M. T.; Campagna, S. J. Phys. Chem. A 2003, 107, 447.
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Campagna, S.4
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26
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34848846228
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3(π-π*).
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3(π-π*).
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