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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Effect of Base Sequence and Hydration on the Electronic and Hole Transport Properties of Duplex DNA: Theory and Experiment
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Effect of Base Sequence and Hydration on the Electronic and Hole Transport Properties of Duplex DNA: Theory and Experiment

机译:碱基序列和水合对双链DNA电子和空穴传输性质的影响:理论与实验

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摘要

An experimental investigation and theoretical study of the duplex DNA sequences d(5'-GAGG-3')~· d(3'-CTCC-5') and d(5'-GTGG-3')~·d(3'-CACC-5') was carried out. The experiments show that the efficiency of radical cation transport, revealed by strand cleavage after treatment with piperidine, is the same in both sequences. Density functional theory (DFT) calculations reveal essentially identical ionization potentials and hole distributions for these sequences when they are properly hydrated. The effect of hydration on the electronic properties of these sequences was examined theoretically. Calculations on dry DNA (i.e., having no water molecules) gives "phantom" electronic transitions to orbitals associated with the sodium counterions. However, these transitions vanish even with a minimal level of hydration. Meaningful theoretical results for DNA are obtained only when the counterions and hydrating water molecules are properly considered.
机译:双链DNA序列d(5'-GAGG-3')〜·d(3'-CTCC-5')和d(5'-GTGG-3')〜·d(3'的实验研究和理论研究-CACC-5')进行。实验表明,在用哌啶处理后,通过链断裂显示的自由基阳离子转运效率在两个序列中是相同的。密度泛函理论(DFT)的计算揭示了这些序列经过适当水合后的电离势和空穴分布基本相同。理论上研究了水合对这些序列的电子性质的影响。对干燥DNA(即没有水分子)的计算给出了与钠抗衡离子有关的轨道的“幻影”电子跃迁。但是,这些过渡即使在水合程度最低的情况下也消失了。仅当适当考虑抗衡离子和水合水分子后,才能获得有意义的DNA理论结果。

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