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2
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0003418177
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J. M. J. Fréchet and D. A. Tomalia, Wiley, New York, For some recent reviews, see:
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Dendrimers and Other Dendritic Polymers, ed., J. M. J. Fréchet, and, D. A. Tomalia,, Wiley, New York, 2001
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7
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2942672223
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For recent developments in dendrimer chemistry, see: Special Issue: Dendrimers and Dendritic Polymers, ed.
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A.-M. Caminade J.-P. Majoral Acc. Chem. Res. 2004 37 341
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Caminade, A.-M.1
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14
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F. Pina P. Passaniti M. Maestri V. Balzani F. Vögtle M. Gorka S.-K. Lee J. Van Heyst H. Fakhrnabavi ChemPhysChem 2004 5 473
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Pina, F.1
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Maestri, M.3
Balzani, V.4
Vögtle, F.5
Gorka, M.6
Lee, S.-K.7
Van Heyst, J.8
Fakhrnabavi, H.9
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17
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0035953992
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M. Maus S. Mitra M. Lor J. Hofkens T. Weil A. Herrmann K. Müllen F. C. De Schryver J. Phys. Chem. A 2001 105 3961
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Maus, M.1
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Müllen, K.7
De Schryver, F.C.8
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24
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11444269942
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G. Bergamini C. Saudan P. Ceroni M. Maestri V. Balzani M. Gorka S.-K. Lee J. van Heyst F. Vögtle J. Am. Chem. Soc. 2004 126 16466
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Lee, S.-K.7
Van Heyst, J.8
Vögtle, F.9
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25
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33747585168
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W.-S. Li K. S. Kim D.-L. Jiang H. Tanaka T. Kawai J. H. Kwon D. Kim T. Aida J. Am. Chem. Soc. 2006 128 10527
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28
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0141633643
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R. Gronheid A. Stefan M. Cotlet J. Hofkens J. Qu K. Müllen M. Van der Auweraer J. W. Verhoeven F. C. De Schryver Angew. Chem., Int. Ed. 2003 42 4209
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S. Jordens G. De Belder M. Lor G. Schweitzer M. Van der Auweraer T. Weil E. Reuther K. Müllen F. C. De Schryver Photochem. Photobiol. Sci. 2003 2 177
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0037020407
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U. Hahn M. Gorka F. Vögtle V. Vicinelli P. Ceroni M. Maestri V. Balzani Angew. Chem., Int. Ed. 2002 41 3595
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39
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32244432511
-
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Taylor & Francis, CRC Press, Boca Raton, FL, USA, 3rd edn
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M. Montalti, A. Credi, L. Prodi and M. T. Gandolfi, Handbook of Photochemistry, Taylor & Francis, CRC Press, Boca Raton, FL, USA, 3rd edn, 2006
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Handbook of Photochemistry
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Montalti, M.1
Credi, A.2
Prodi, L.3
Gandolfi, M.T.4
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40
-
-
34447126750
-
-
This value has been estimated by the molar absorption coefficient of the second generation dendron analogous to D2, but terminated by benzene instead of naphthalene since at 275 nm the benzene contribution to the absorption is negligible
-
This value has been estimated by the molar absorption coefficient of the second generation dendron analogous to D2, but terminated by benzene instead of naphthalene since at 275 nm the benzene contribution to the absorption is negligible
-
-
-
-
41
-
-
34447121739
-
-
This value is the molar absorption coefficient of 2-methyl naphthalene
-
This value is the molar absorption coefficient of 2-methyl naphthalene
-
-
-
-
47
-
-
34447122365
-
-
In the case of G0 the emission is so weak that a careful analysis of emission band shape is precluded
-
In the case of G0 the emission is so weak that a careful analysis of emission band shape is precluded
-
-
-
-
49
-
-
34447120605
-
-
0 for energy transfer between naphthalene and dimethoxybenzil, estimated according to Förster theory, is approximately 2 nm, suggesting that energy transfer process could be very efficient in such crowded structures
-
0 for energy transfer between naphthalene and dimethoxybenzil, estimated according to Förster theory, is approximately 2 nm, suggesting that energy transfer process could be very efficient in such crowded structures
-
-
-
-
51
-
-
0004344770
-
-
University Science Book, Sausalito, CA, USA
-
N. J. Turro, Modern Molecular Photochemistry, University Science Book, Sausalito, CA, USA, 1991
-
(1991)
Modern Molecular Photochemistry
-
-
Turro, N.J.1
-
52
-
-
34447127947
-
-
A delayed fluorescence obtained by triplet-triplet annihilation can be excluded because of the low sample concentration and low intensity of the lamp source
-
A delayed fluorescence obtained by triplet-triplet annihilation can be excluded because of the low sample concentration and low intensity of the lamp source
-
-
-
-
54
-
-
0034827516
-
-
P. Ceroni V. Vicinelli M. Maestri V. Balzani W. M. Müller U. Müller U. Hahn F. Osswald F. Vögtle New J. Chem. 2001 25 989
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New J. Chem.
, vol.25
, pp. 989
-
-
Ceroni, P.1
Vicinelli, V.2
Maestri, M.3
Balzani, V.4
Müller, W.M.5
Müller, U.6
Hahn, U.7
Osswald, F.8
Vögtle, F.9
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