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Titlebook: Long-Range Charge Transfer in DNA I; G.B. Schuster Book 2004 Springer-Verlag Berlin Heidelberg 2004 Biochemistry.DNA.Electron-Transfer.Ino

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The Mechanism of Long-Distance Radical Cation Transport in Duplex DNA: Ion-Gated Hopping of Polaronadical cation hopping. These motions lead to a distortion of the local environment around the radical cation that causes it to gain stability (the polaron). Thermal motions of the DNA and its environment (phonons) cause the radical cation to migrate adiabatically from one polaronic site to another.
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G.B. SchusterThis series presents critical reviews of the present position and future trends in modern chemical research.Short and concise reports on chemistry, each written by the world renowned experts.Still val
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Topics in Current Chemistryhttp://image.papertrans.cn/l/image/588546.jpg
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978-3-662-14561-6Springer-Verlag Berlin Heidelberg 2004
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0340-1022 Overview: This series presents critical reviews of the present position and future trends in modern chemical research.Short and concise reports on chemistry, each written by the world renowned experts.Still val978-3-662-14561-6978-3-540-39880-6Series ISSN 0340-1022 Series E-ISSN 1436-5049
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Dynamics and Equilibrium for Single Step Hole Transport Processes in Duplex DNA,ity of the bases separating the primary and secondary donor, and the location of the donor within the same strand as the primary donor or in the complementary strand. Secondary GG and GGG donors form very shallow hole traps, whereas Z forms a much deeper hole trap. These results are correlated with
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Hole Transfer in DNA by Monitoring the Transient Absorption of Radical Cations of Organic Moleculesto investigate the hole transfer process in DNA. Pulse radiolysis provides a unique system for the observation of charge transfer processes over 1 μs, including the multi-step hole transfer process. For direct observation of the radical cation species during the hole transfer process in DNA, we synt
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