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- W2787335977 abstract "Occurrence of electron transfer was studied for different combinations of polycyclic aromatic hydrocarbons (PAHs) and DNA bases as electron donors or acceptors and free radicals only as electron acceptors. Geometries of all the molecules and radicals were optimized in aqueous medium employing the polarizable continuum model. Single electron transfer (SET) and sequential proton loss electron transfer mechanisms were investigated employing Gibbs free energies of the appropriate neutral, anionic and cationic species. Barrier energies involved in these phenomena were calculated using the Marcus theory. The SET barrier energies were found to be linearly correlated with [Formula: see text] (Electron affinities of acceptors – Ionization potentials of donors). SET barrier energies from the DNA bases to the PAHs follow the order Cy [Formula: see text] Th [Formula: see text] Ad [Formula: see text] Gu, whereas SET barrier energies from the PAHs to the DNA bases follow the order Gu [Formula: see text] Ad [Formula: see text] Th [Formula: see text] Cy. Thus, guanine, among the DNA bases, is the best electron donor to the PAHs and worst electron acceptor from the same." @default.
- W2787335977 created "2018-02-23" @default.
- W2787335977 creator A5005599951 @default.
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- W2787335977 date "2018-02-01" @default.
- W2787335977 modified "2023-09-27" @default.
- W2787335977 title "Electron transfer in biologically important systems: Polycyclic aromatic hydrocarbons, DNA bases and free radicals" @default.
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- W2787335977 doi "https://doi.org/10.1142/s0219633618500086" @default.
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