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14
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0003631277
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Kochanski, E., Ed.; Kluwer Acadmic Publishers: Dorhrecht, The Netherlands
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(b) Marcus, R. A.; Siddarth, P. In Photoprocesses in Transition Metal Complexes, Biosystetns, and Other Molecules; Kochanski, E., Ed.; Kluwer Acadmic Publishers: Dorhrecht, The Netherlands, 1992.
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Marcus, R.A.1
Siddarth, P.2
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21
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33646017917
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note
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2a,24 of the chain lengths of the polyether tails. Thus, the rate constant fex in these melts is thought to represent a "contact" reaction, while the equilibrium δ is the appropriate distance representing the overall charge displacement from the contact electron transfer and ensuing motion of the complexes within their polyether shells. Additionally, the difference between equilibrium and contact δ in the present case is only ca. 1.5 Å.
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22
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85086353045
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note
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3, 0.85 M, and 12.5 A; δ = 1.35 g/mol, C = 0.723 M, δ= 13.2 A; p = 1.37 g/mol, C = 0.84 M, δ= 12.5 A; p = 1.42 g/mol, C = 0.936 M, δ= 12.1 Å, respectively.
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23
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85086351862
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note
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-, A = area of electrode, D and C are the diffusion coefficient and concentration of electroactive species, respectively.
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25
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0022046293
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(b) Kovach, P. M.; Lowry, C.; Peters, D. G.; Wightman, R. M. J. Electroanal. Chem. 1985, 185, 285.
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Kovach, P.M.1
Lowry, C.2
Peters, D.G.3
Wightman, R.M.4
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26
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84961499821
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(a) Sutin, N.; Brunschwig, B. S.; Cretuz, C.; Winkler, J. R. Pure Appl. Chem. 1988, 60, 1817.
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Sutin, N.1
Brunschwig, B.S.2
Cretuz, C.3
Winkler, J.R.4
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28
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85086351524
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note
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12b of the optical dielectric constant for an example redox polyether hybrid gave a constant within 10% of the polyether-alone value.
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29
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33646036289
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Unpublished results, UNC
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(b) Ritchie, J. Unpublished results, UNC, 1999.
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(1999)
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Ritchie, J.1
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0030669438
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Williams, M. E.; Crooker, J. C.; Pyati, R.; Lyons, L. J.; Murray, R. W. J. Am. Chem. Soc. 1997, 119, 10249.
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Williams, M.E.1
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Pyati, R.3
Lyons, L.J.4
Murray, R.W.5
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31
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33646025456
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University of North Carolina at Chapel Hill. Unpublished results
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(a) Williams, M. B. University of North Carolina at Chapel Hill. Unpublished results, 1999.
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(1999)
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Williams, M.B.1
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32
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33646048529
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Sulfonated counterions ion-pair to ligand-tailed metal complexes much more strongly than perchlorate counterions.
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(b) Sulfonated counterions ion-pair to ligand-tailed metal complexes much more strongly than perchlorate counterions.
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33
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85086353106
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note
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3d as 0.8 Å.
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34
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33646063738
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Manuscript in preparation.
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Ritchie, J. Manuscript in preparation.
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Ritchie, J.1
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35
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33646060625
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These materials behave as Newtonian fluids; i.e., measured viscosity does not vary with shear rate.
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These materials behave as Newtonian fluids; i.e., measured viscosity does not vary with shear rate.
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38
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0346612041
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(a) Watanabe, M.; Longmire, M. L.; Murray, R. W. J. Phys. Chem. 1990, 94, 2615.
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Watanabe, M.1
Longmire, M.L.2
Murray, R.W.3
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40
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0003516749
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W. H. Freeman & Co.: New York
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H is the hydrodynamic radius of a diffusion molecule in the following reference. Atkins, P. W. Physical Chemistry, 5th ed.; W. H. Freeman & Co.: New York, 1990; p 849.
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(1990)
Physical Chemistry, 5th Ed.
, pp. 849
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Atkins, P.W.1
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41
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33646072366
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University of North Carolina at Chapel Hill. Unpublished results
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Crooker, J. C. University of North Carolina at Chapel Hill. Unpublished results, 1997.
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(1997)
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Crooker, J.C.1
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43
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85086352031
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CION).
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CION).
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45
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0031232839
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Williams, M. E.; Lyons, L. J.; Long, J. W.; Murray, R. W. J. Phys. Chem. B 1997, 101, 7584.
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J. Phys. Chem. B
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Williams, M.E.1
Lyons, L.J.2
Long, J.W.3
Murray, R.W.4
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46
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33645925584
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Norton, J. D.; Anderson, S. A.; White, H. S. J. Phys. Chem. 1992, 90, 3.
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Norton, J.D.1
Anderson, S.A.2
White, H.S.3
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47
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33646027818
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Reference 18
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Reference 18, p 850.
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49
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85086353040
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M (0.68 and 0.93 for the Co,Ru-CI-tailed complexes, respectively), meaning that both ionic and electronic migration effects should be present.
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M (0.68 and 0.93 for the Co,Ru-CI-tailed complexes, respectively), meaning that both ionic and electronic migration effects should be present.
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