-
1
-
-
84949961012
-
-
An exergonic process is one for which the free energy change is negative
-
An exergonic process is one for which the free energy change is negative.
-
-
-
-
2
-
-
0033582653
-
60 Chromophore
-
60 Chromophore", J. Org. Chem. 1999, 64, 1238-1246.
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Jolliffe, K.A.1
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Ranasinghe, M.G.3
Shephard, M.J.4
Paddon-Row, M.N.5
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3
-
-
0029963741
-
Effects of Asp Residues near the L-Side Pigments in Bacterial Reaction Centers
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B. A. Heller, D. Holten, C. Kirmaier, "Effects of Asp Residues near the L-Side Pigments in Bacterial Reaction Centers", Biochemistry 1996, 35, 15418-15427.
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Heller, B.A.1
Holten, D.2
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4
-
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0011526199
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Electron Transfer-From Isolated Molecules to Biomolecules
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M. Bixon, J. Jortner, "Electron Transfer-From Isolated Molecules to Biomolecules", Adv. Chem. Phys. 1999, 106, 35-202.
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5
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0002012276
-
Investigating Long-Range Electron-Transfer Processes With Rigid, Covalently Linked Donor-(Norbornylogous Bridge)-Acceptor Systems
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M. N. Paddon-Row, "Investigating Long-Range Electron-Transfer Processes With Rigid, Covalently Linked Donor-(Norbornylogous Bridge)-Acceptor Systems", Acc. Chem. Res. 1994, 27, 18-25.
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Paddon-Row, M.N.1
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6
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33748216903
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Electron Transfer Reactions in Chemistry-Theory and Experiment (Nobel Lecture)
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Marcus, R.A.1
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7
-
-
84949947420
-
-
Reorganization energy is an important concept in ET theory and may be defined as the energy of the product possessing the relaxed geometry of the reactant minus the energy of the product in its relaxed geometry (Figure 5). The solvent is also included in this definition
-
Reorganization energy is an important concept in ET theory and may be defined as the energy of the product possessing the relaxed geometry of the reactant minus the energy of the product in its relaxed geometry (Figure 5). The solvent is also included in this definition.
-
-
-
-
8
-
-
0000353435
-
Through-Bond and Through-Space Interactions in Unsaturated Hydrocarbons:Their Implications for Chemical Reactivity and Long-Range Electron Transfer
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J. F. Liebman, A. Greenberg (Eds.), VCH Publishers, New York
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M. N. Paddon-Row, K. D. Jordan, "Through-Bond and Through-Space Interactions in Unsaturated Hydrocarbons:Their Implications for Chemical Reactivity and Long-Range Electron Transfer", in J. F. Liebman, A. Greenberg (Eds.): Modern Models of Bonding and Delocalization, Vol. 6, VCH Publishers, New York 1988, pp. 115-194.
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Paddon-Row, M.N.1
Jordan, K.D.2
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9
-
-
84949983673
-
-
The distance used for calculating g may be measured either in Å or by the number of bonds which connect the two chromophores. For the norbornylogous bridge, one bond is equivalent to 1.2 Å
-
The distance used for calculating g may be measured either in Å or by the number of bonds which connect the two chromophores. For the norbornylogous bridge, one bond is equivalent to 1.2 Å.
-
-
-
-
10
-
-
33845282528
-
Long-Range Photoinduced Through-Bond Electron Transfer and Radiative Recombination via Rigid Non-Conjugated Bridges: Distance and Solvent Dependence
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H. Oevering, M. N. Paddon-Row, H. Heppener, A. M. Oliver, E. Cotsaris, J. W. Verhoeven, N. S. Hush, "Long-Range Photoinduced Through-Bond Electron Transfer and Radiative Recombination via Rigid Non-Conjugated Bridges: Distance and Solvent Dependence", J. Am. Chem. Soc. 1987, 109, 3258-3269.
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11
-
-
33845279571
-
Factors Affecting Charge Separation and Recombination in Photo-Excited Rigid Donor-Insulator-Acceptor Molecules
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M. N. Paddon-Row,A.M.Oliver, J. M.Warman, K. J. Smit, M. P. de Haas, H. Oevering, J. W. Verhoeven, "Factors Affecting Charge Separation and Recombination in Photo-Excited Rigid Donor-Insulator-Acceptor Molecules", J. Phys. Chem. 1988, 92, 6958-6962.
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Verhoeven, J.W.7
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12
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33845553548
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Some Aspects of Orbital Interactions Through Bonds: Physical and Chemical Consequences
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M. N. Paddon-Row, "Some Aspects of Orbital Interactions Through Bonds: Physical and Chemical Consequences", Acc. Chem. Res. 1982, 15, 245-251.
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Paddon-Row, M.N.1
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13
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0008034716
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Interaction of Orbitals through Space and through Bonds
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Hoffmann, R.1
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14
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-
0001118846
-
Strong Effects of the Bridge Configuration on Photoinduced Charge Separation in Rigidly Linked Donor-Acceptor Systems
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A. M. Oliver, D. C. Craig, M. N. Paddon-Row, J. Kroon, J. W. Verhoeven, "Strong Effects of the Bridge Configuration on Photoinduced Charge Separation in Rigidly Linked Donor-Acceptor Systems", Chem. Phys. Lett. 1988, 150, 366-373.
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Oliver, A.M.1
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15
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33750128829
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Intramolecular Long-Distance Electron Transfer in Organic Molecules
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Closs, G.L.1
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16
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84949967952
-
-
-1
-
-1.
-
-
-
-
17
-
-
0000698627
-
Orbital Symmetry Effects on Intramolecular Charge Recombination
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A. M. Oliver, M. N. Paddon-Row, J. Kroon, J.W. Verhoeven, "Orbital Symmetry Effects on Intramolecular Charge Recombination", Chem. Phys. Lett. 1992, 191, 371-377.
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Oliver, A.M.1
Paddon-Row, M.N.2
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Verhoeven, J.W.4
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18
-
-
0000423146
-
Symmetry Effects in Photoinduced Electron Transfer Reactions
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Y. Zeng, M. B. Zimmt, "Symmetry Effects in Photoinduced Electron Transfer Reactions", J. Am. Chem. Soc. 1991, 113, 5107-5109.
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Zeng, Y.1
Zimmt, M.B.2
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19
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2042440900
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Modelling Long-Range Photosynthetic Electron Transfer in Rigidly Bridged Porphyrin-Quinone Systems
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M. Antolovich, P. J. Keyte, A. M. Oliver, M. N. Paddon-Row, J. Kroon, J. W. Verhoeven, S. A. Jonker, J. M. Warman, "Modelling Long-Range Photosynthetic Electron Transfer in Rigidly Bridged Porphyrin-Quinone Systems", J. Phys. Chem. 1991, 95, 1933-1941.
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Antolovich, M.1
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Verhoeven, J.W.6
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20
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0031564583
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60-Porphyrin Dyad
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Bell, T.D.M.1
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Paddon-Row, M.N.6
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21
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0029903324
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60 Dyads
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60 Dyads", J. Am. Chem. Soc. 1996, 118, 11771-11782.
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Imahori, H.1
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Taniguchi, S.5
Okada, T.6
Shirakawa, M.7
Sakata, Y.8
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22
-
-
3743143974
-
Photoinduced Electron Transfer to C-60 Across Extended 3- and 11-Bond Hydrocarbon Bridges-Creation of a Long-Lived Charge-Separated State
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R. M. Williams, M. Koeberg, J. M. Lawson, Y. Z. An, Y. Rubin, M. N. Paddon-Row, J. W. Verhoeven, "Photoinduced Electron Transfer to C-60 Across Extended 3- and 11-Bond Hydrocarbon Bridges-Creation of a Long-Lived Charge-Separated State", J. Org. Chem. 1996, 61, 5055-5062.
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Williams, R.M.1
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An, Y.Z.4
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Paddon-Row, M.N.6
Verhoeven, J.W.7
-
23
-
-
84949989716
-
-
60 group
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60 group.
-
-
-
-
24
-
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84949993648
-
60 in Electron Transfer
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60 in Electron Transfer", Chem. Phys. Lett. 1996, 1996, 263.
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Imahori, H.1
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Okada, T.6
Shirakawa, M.7
Sakata, Y.8
-
25
-
-
84949975661
-
-
60 will slow down CR processes
-
60 will slow down CR processes.
-
-
-
-
26
-
-
84949987237
-
-
Hole transfer (HT) is the movement of a positive charge, say in cation radicals. In reality, it is still an ET process but it is often more convenient to focus on the migration of the positive hole (vacated by an electron) rather than the electron (which moves in the opposite direction to the hole)
-
Hole transfer (HT) is the movement of a positive charge, say in cation radicals. In reality, it is still an ET process but it is often more convenient to focus on the migration of the positive hole (vacated by an electron) rather than the electron (which moves in the opposite direction to the hole).
-
-
-
-
27
-
-
0000772905
-
Photoinduced Porphyrin-to-Quinone Electron Transfer across Oligospirocyclic Spacers
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S. Knapp, T. G. M. Dhar, J. Albaneze, S. Gentemann, J. A. Potenza, D. Holten, H. J. Schugar, "Photoinduced Porphyrin-to-Quinone Electron Transfer across Oligospirocyclic Spacers", J. Am. Chem. Soc. 1991, 1991, 113.
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85168567446
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Electron Tunneling in Proteins-Role of the Intervening Medium
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R. Langen, J. L. Colon, D. R. Casimiro, T. B. Karpishin, J. R. Winkler, H. B. Gray, "Electron Tunneling in Proteins-Role of the Intervening Medium", J. Biol. Inorg. Chem. 1996, 1996, 1.
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0030859229
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Through-Bond Orbital Coupling, the Parity Rule, and the Design of Superbridges Which Exhibit Greatly Enhanced Electronic Coupling-a Natural Bond Orbital Analysis
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M. N. Paddon-Row, M. J. Shephard, "Through-Bond Orbital Coupling, the Parity Rule, and the Design of Superbridges Which Exhibit Greatly Enhanced Electronic Coupling-a Natural Bond Orbital Analysis", J. Am. Chem. Soc. 1997, 119, 5355-5365.
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0031209440
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Electron Transfer Rates in Bridged Molecular Systems-a Phenomenological Approach to Relaxation
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W. B. Davis, M. R. Wasielewski, M. A. Ratner, V. Mujica, A. Nitzan, "Electron Transfer Rates in Bridged Molecular Systems-a Phenomenological Approach to Relaxation", J. Phys. Chem. 1997, 101, 6158-6164.
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31
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0032487965
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Molecular-Wire Behaviour in p-Phenylenevinylene Oligomers
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32
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0029092621
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Direct Evaluation of Electronic Coupling Mediated by Hydrogen Bonds-Implications for Biological Electron Transfer
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P. J. F. de Rege, S. A. Williams, M. J. Therien, "Direct Evaluation of Electronic Coupling Mediated by Hydrogen Bonds-Implications for Biological Electron Transfer", Science 1995, 269, 1409-1413.
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de Rege, P.J.F.1
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33
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0029931828
-
Effect of the Electric Field Generated by the Helix Dipole on Photoinduced Intramolecular Electron Transfer in Dichromophoric Alpha-Helical Peptides
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E. Galoppini, M. A. Fox, "Effect of the Electric Field Generated by the Helix Dipole on Photoinduced Intramolecular Electron Transfer in Dichromophoric Alpha-Helical Peptides", J. Am. Chem. Soc. 1996, 118, 2299-2300.
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Solvent-Mediated Electron Transfer-Correlation Between Coupling Magnitude and Solvent Vertical Electron Affinity
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Han, H.1
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35
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84949959866
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to An
-
to An.
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36
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28044440313
-
Large Predicted Changes in Geometry Accompanying Charge Separation in Various "Rigid" Multichromophoric Systems in the Gas Phase: An ab Initio MO Study
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M. J. Shephard, M. N. Paddon-Row, "Large Predicted Changes in Geometry Accompanying Charge Separation in Various "Rigid" Multichromophoric Systems in the Gas Phase: An ab Initio MO Study", J. Phys. Chem. A 1999, 103, 3347-3350.
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0031960971
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Efficient Photoinduced Electron Transfer in a Rigid U-Shaped Tetrad Bearing Terminal Porphyrin and Viologen Units
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K. A. Jolliffe, T. D. M. Bell, K. P. Ghiggino, S. J. Langford, M. N. Paddon-Row, "Efficient Photoinduced Electron Transfer in a Rigid U-Shaped Tetrad Bearing Terminal Porphyrin and Viologen Units", Angew. Chem., Int. Ed. 1998, 37, 916-919.
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0032841220
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A New Class of Giant Tetrads for Studying Aspects of Long-Range Intramolecular Electron Transfer Processes: Synthesis and Computational Studies
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0000875007
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A Connection between Intramolecular Long-Range Electron, Hole, and Triplet Energy Transfers
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G. L. Closs, M. D. Johnson, J. R. Miller, P. Piotrowiak, "A Connection between Intramolecular Long-Range Electron, Hole, and Triplet Energy Transfers", J. Am. Chem. Soc. 1989, 111, 3751-3753.
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40
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0000242146
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Observation of a Remarkable Dependence of the Rate of Singlet-Singlet Energy Transfer on the Configuration of the Hydrocarbon Bridge in Bichromophoric Systems
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41
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0033620403
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Highly Efficient Through-Bond-Mediated Electronic Excitation Energy Transfer Taking Place Over 12 Å
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33748531211
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Charge Transfer through the DNA Base Stack
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0033119286
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On the Mechanism of Long-Range Electron Transfer through DNA
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0033118533
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0030820847
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Distance-Dependent Electron Transfer in DNA Hairpins
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46
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0032539233
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Sequence Dependent Long Range Hole Transport in DNA
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47
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84949992556
-
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23 and GGG groups
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23 and GGG groups.
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48
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0031033975
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Conversion of Light Energy to Proton Potential in Liposomes by Artificial Photosynthetic Reaction Centres
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G. Steinberg-Yfrach, P. A. Liddell, S. C. Hung, A. L. Moore, D. Gust, T. A. Moore, "Conversion of Light Energy to Proton Potential in Liposomes by Artificial Photosynthetic Reaction Centres", Nature 1997, 385, 239-241.
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49
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0030218268
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Contemporary Issues in Electron Transfer Research
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P. F. Barbara, T. J. Meyer, M. A. Ratner, "Contemporary Issues in Electron Transfer Research", J. Phys. Chem. 1996, 100, 13148-13168.
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(1996)
J. Phys. Chem.
, vol.100
, pp. 13148-13168
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Barbara, P.F.1
Meyer, T.J.2
Ratner, M.A.3
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