Division of Chemistry, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan.
J Phys Chem A. 2012 Jan 12;116(1):491-503. doi: 10.1021/jp206546g. Epub 2011 Dec 29.
The mechanisms of the ultrafast nonradiative deactivation of uracil and its substituted derivatives thymine (5-methyluracil) and 5-fluorouracil after absorption of UV light are explored and compared by means of ab initio multistate (MS) CASPT2 calculations. The MS-CASPT2 method is applied for the calculation of potential energy profiles, especially for the geometry optimization in the electronically excited state, with the aim of an accurate prediction of deactivation pathways. The resulting energy curves of each molecule exhibit that the conical intersection between the (1)ππ* and ground states is accessible via small energy barriers from the minimum in the (1)ππ* state as well as from that in the (1)nπ* state. The barrier of 5-fluorouracil in the (1)ππ* state is calculated to be definitely higher than those of uracil and thymine, which is consistent with experiments and suggests that the elongation of the excited-state lifetime of uracil by fluorine substitution is significantly contributed from intrinsic electronic effect of the molecule. However, no evidence of the experimentally observed longer excited-state lifetime of thymine than uracil is found in the presently calculated MS-CASPT2 potential energy curves in the (1)ππ* and (1)nπ* states, implying nonnegligible contribution of other factors such as solvation effect and substituent mass to the photoinduced dynamics of uracil derivatives.
通过从头算多态(MS)CASPT2 计算,探索并比较了尿嘧啶及其取代衍生物胸腺嘧啶(5-甲基尿嘧啶)和 5-氟尿嘧啶在吸收紫外光后超快非辐射失活的机制。MS-CASPT2 方法用于计算势能曲线,特别是在电子激发态下的几何优化,旨在准确预测失活途径。每个分子的所得能量曲线表明,(1)ππ和基态之间的锥形交叉可以通过(1)ππ态和(1)nπ态的最小值从较小的能量势垒中获得。(1)ππ态中 5-氟尿嘧啶的势垒被计算为明显高于尿嘧啶和胸腺嘧啶的势垒,这与实验结果一致,表明氟取代物延长了尿嘧啶的激发态寿命,这主要归因于分子的固有电子效应。然而,在目前计算的(1)ππ和(1)nπ态的 MS-CASPT2 势能曲线中,没有发现实验观察到的胸腺嘧啶的激发态寿命比尿嘧啶长的证据,这意味着其他因素(如溶剂化效应和取代基质量)对尿嘧啶衍生物光诱导动力学的不可忽略的贡献。