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Deciphering the photochemical mechanisms describing the UV-induced processes occurring in solvated guanine monophosphate

机译:解释描述溶剂化单磷酸鸟嘌呤中的紫外线诱导过程的光化学机理

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The photophysics and photochemistry of water-solvated guanine monophosphate (GMP) are here characterized by means of a multireference quantum-chemical/molecular mechanics theoretical approach (CASPT2//CASSCF/AMBER) in order to elucidate the main photo-processes occurring upon UV-light irradiation. The effect of the solvent and of the phosphate group on the energetics and structural features of this system are evaluated for the first time employing high-level ab initio methods and thoroughly compared to those in vacuo previously reported in the literature and to the experimental evidence to assess to which extent they influence the photoinduced mechanisms. Solvated electronic excitation energies of solvated GMP at the Franck-Condon (FC) region show a red shift for the ππ* La and Lb states, whereas the energy of the oxygen lone-pair nπ* state is blue-shifted. The main photoinduced decay route is promoted through a ring-puckering motion along the bright lowest-lying La state towards a conical intersection (CI) with the ground state, involving a very shallow stationary point along the minimum energy pathway in contrast to the barrierless profile found in gas-phase, the point being placed at the end of the minimum energy path (MEP) thus endorsing its ultrafast deactivation in accordance with time-resolved transient and photoelectron spectroscopy experiments. The role of the nπ* state in the solvated system is severely diminished as the crossings with the initially populated La state and also with the Lb state are placed too high energetically to partake prominently in the deactivation photo-process. The proposed mechanism present in solvated and in vacuo DNA/RNA chromophores validates the intrinsic photostability mechanism through CI-mediated non-radiative processes accompanying the bright excited-state population towards the ground state and subsequent relaxation back to the FC region.
机译:为了阐明发生在紫外光谱下的主要光过程,此处采用多参考量子化学/分子力学理论方法(CASPT2 // CASSCF / AMBER)对水溶鸟嘌呤单磷酸鸟嘌呤(GMP)的光物理和光化学进行了表征。光照射。首次使用高水平的从头算方法首次评估了溶剂和磷酸基团对系统能量和结构特征的影响,并与先前文献中报道的真空实验和实验证据进行了全面比较。评估它们在多大程度上影响了光诱导机制。在Franck-Condon(FC)区域,溶剂化GMP的溶剂化电子激发能对于ππ* La和Lb状态显示红移,而氧孤对nπ*状态的能量进行蓝移。主要的光诱导衰变途径是通过沿明亮的最低位置的La态向着基态的圆锥形交叉点(CI)进行的起皱运动来促进的,该过程涉及沿着最小能量路径的非常浅的静止点,这与无障碍轮廓相反在气相中发现,该点位于最小能量路径(MEP)的末端,因此根据时间分辨瞬态和光电子光谱实验证明了其超快失活。 nπ*态在溶剂化体系中的作用大大降低,因为与初始填充的La态以及与Lb态的交界处在能量上太高而无法在钝化光处理中显着参与。溶剂化和真空DNA / RNA生色团中存在的拟议机制通过伴随着明亮的激发态种群向基态和随后弛豫回到FC区的CI介导的非辐射过程验证了固有的光稳定性机制。

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