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Hole delocalization over adenine tracts in single stranded DNA oligonucleotides

机译:单链DNA寡核苷酸中腺嘌呤域上的孔离域

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摘要

Adiabatic ionization energies of single stranded DNA oligonucleotides containing adenine tracts of different sizes have been computed at the DFT level and compared with the oxidation potentials determined by differential pulse voltammetry. Geometry optimizations have been performed at the full quantum mechanical level, including the sugar phosphate backbone and solvent effects. The observed progressive lowering of the ionization energy upon increasing the number of consecutive adenines is well predicted, the computed ionization potential shifts being in very good agreement with the experimental outcomes, both by using pure and hybrid functionals. The spin density of the oligonucleotide radical cations is distributed almost over the whole adenine tract, forming delocalized polarons.
机译:已在DFT水平上计算了包含不同大小腺嘌呤段的单链DNA寡核苷酸的绝热电离能,并将其与通过差分脉冲伏安法测定的氧化电位进行了比较。几何优化已在完整的量子力学水平上进行,包括糖磷酸酯主链和溶剂效应。可以很好地预测到随着连续腺嘌呤数量的增加,观察到的电离能量的逐渐降低,通过使用纯功能和混合功能,计算出的电离电势位移与实验结果非常吻合。寡核苷酸自由基阳离子的自旋密度几乎分布在整个腺嘌呤区,形成离域极化子。

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