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(a)
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(a) N.C. Seeman Nature 421 2003 427
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Seeman, N.C.1
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A preliminary report
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Nishimine, M.1
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Fukuzumi, S.4
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39
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0030960095
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The trigonal ruthenium complexes are preferentially located in the minor groove, although there have been suggestions about the major groove binding as well. See (a)
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The trigonal ruthenium complexes are preferentially located in the minor groove, although there have been suggestions about the major groove binding as well. See (a) I. Greguric J.R. Aldrich-Wright J.G. Collins J. Am. Chem. Soc. 119 1997 3621
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Greguric, I.1
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43
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28144437246
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2+ (phen = 1,10-phenathroline) are reported to bind with DNA by quasi-intercalation (indenture of one base pair) [19]
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2+ (phen = 1,10-phenathroline) are reported to bind with DNA by quasi-intercalation (indenture of one base pair) [19].
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53
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0013304652
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The SHACV method provides a superior approach to directly evaluating the one-electron redox potentials in the presence of a follow-up chemical reaction, relative to the better-known dc and fundamental harmonic ac methods. (a) John Wiley and Sons New York Chapter 10
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The SHACV method provides a superior approach to directly evaluating the one-electron redox potentials in the presence of a follow-up chemical reaction, relative to the better-known dc and fundamental harmonic ac methods. (a) A.J. Bard L.R. Faulkner Electrochemical Methods Fundamental and Applications 2001 John Wiley and Sons New York p. 368-416, Chapter 10
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Electrochemical Methods Fundamental and Applications
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Bard, A.J.1
Faulkner, L.R.2
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65
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0037129478
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2+, multi-exponential fluorescence decays of ruthenium complexes which have 1,10-phenanthroline and its related ligands have been observed in the presence of DNA. See (a)
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2+, multi-exponential fluorescence decays of ruthenium complexes which have 1,10-phenanthroline and its related ligands have been observed in the presence of DNA. See (a) A. Hergueta-Bravo M.E. Jiménez-Hernández F. Montero E. Oliveros G. Orellana J. Phys. Chem. B 106 2002 4010
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Orellana, G.5
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18
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18.
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76
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F.D. Lewis R.S. Kalgutkar Y. Wu X. Liu J. Liu R.T. Hayes S.E. Miller M.R. Wasielewski J. Am. Chem. Soc. 122 2000 12346
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78
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The transient absorption band observed at 520nm is assigned to QuH
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R.F. Cozzens T.A. Gover The transient absorption band observed at 520 nm is assigned to QuH J. Phys. Chem. 74 1970 3003
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Cozzens, R.F.1
Gover, T.A.2
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28144444543
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3+ has preculded the accurate determination of the back electron transfer rates
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3+ has preculded the accurate determination of the back electron transfer rates.
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