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A ‘bottom up’, ab initio computational approach to understanding fundamental photophysical processes in nitrogen containing heterocycles, DNA bases and base pairs

机译:一种“自下而上”,从头开始的计算方法,用于了解含氮杂环,DNA碱基和碱基对中的基本光物理过程

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摘要

The availability of non-radiative decay mechanisms by which photoexcited molecules can revert to their ground electronic state, without experiencing potentially deleterious chemical transformation, is fundamental to molecular photostability. This Perspective Article combines results of new electronic structure calculations and prior experimental data in an effort to systematise trends in the non-radiative decay following UV excitation of selected families of heterocyclic molecules. We start with the prototypical uni- and bicyclic molecules phenol and indole, and explore the structural and photophysical consequences of incorporating progressively more nitrogen atoms within the respective ring structures to the DNA bases thymine, cytosine, adenine and guanine. For each of the latter, we identify low energy non-radiative decay pathways conical intersections with the ground state potential energy surface accessed by out-of-plane ring deformations. This is followed by summary descriptions and illustrations of selected rival (electron driven H atom transfer) non-radiative excited state decay processes that demand consideration once the nucleobases are merely components in larger biomolecular systems like nucleosides, and both individual and stacked base-pairs.
机译:非辐射衰变机制的可利用性是分子光稳定性的基础,通过这种机制,光激发分子可以恢复其基态电子态,而不会经历可能有害的化学转化。该观点文章结合了新的电子结构计算结果和先前的实验数据,以系统化选定的杂环分子家族在紫外线激发后非辐射衰减的趋势。我们从原型的单环和双环分子苯酚和吲哚开始,并探索在相应的环结构内将越来越多的氮原子掺入DNA胸腺嘧啶,胞嘧啶,腺嘌呤和鸟嘌呤的结构和光物理后果。对于后者,我们确定了低能非辐射衰变路径与平面态环形变访问的基态势能面的圆锥形交点。接下来是对选定的竞争分子(电子驱动的H原子转移)非辐射激发态衰变过程的简要描述和说明,一旦核碱基仅是较大生物分子系统(如核苷)中的组成部分,并且既是单个碱基对又是堆叠的碱基对,则需要考虑这些过程。

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