2016
DOI: 10.1021/acs.jpcb.5b11269
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Do Solvated Electrons (eaq) Reduce DNA Bases? A Gaussian 4 and Density Functional Theory-Molecular Dynamics Study

Abstract: The solvated electron (e-aq) is a primary intermediate after an ionization event that produces reductive DNA damage. Accurate determination of standard redox potentials (E°) of nucleobases and of e-aq determine the extent of reaction of e-aq with nucleobases. In this work, E° of e-aq and of nucleobases have been calculated employing the accurate ab initio Gaussian-4 theory including the polarizable continuum model (PCM). The Gaussian-4-calculated E° of e-aq (-2.86 V) is in excellent agreement with the experime… Show more

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Cited by 44 publications
(74 citation statements)
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References 62 publications
(206 reference statements)
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“…Our G4-calculated E o vs. NHE of e aq − is −2.88 V which is in excellent agreement with the reported experimental values −2.87 V and −2.95 V, respectively (Kumar et al, 2016). The G4-calculated E o vs. NHE of G, A, C, T and U in DMF agree with the experimental values well with a mean unsigned error (MUE) with respect to experiment is 0.22 V (Kumar et al, 2016).…”
Section: Electron Reaction With Dnasupporting
confidence: 91%
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“…Our G4-calculated E o vs. NHE of e aq − is −2.88 V which is in excellent agreement with the reported experimental values −2.87 V and −2.95 V, respectively (Kumar et al, 2016). The G4-calculated E o vs. NHE of G, A, C, T and U in DMF agree with the experimental values well with a mean unsigned error (MUE) with respect to experiment is 0.22 V (Kumar et al, 2016).…”
Section: Electron Reaction With Dnasupporting
confidence: 91%
“…The G4-calculated E o vs. NHE of G, A, C, T and U in DMF agree with the experimental values well with a mean unsigned error (MUE) with respect to experiment is 0.22 V (Kumar et al, 2016). The G4-calculated E o vs. NHE of G, A, C, T and U in water are −2.84 V, −2.78 V, −2.44 V, −2.42 V and −2.33 V, respectively.…”
Section: Electron Reaction With Dnasupporting
confidence: 69%
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