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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Comparison of the non-radiative decay mechanisms of 4-pyrimidinone and uracil: an ab initio study
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Comparison of the non-radiative decay mechanisms of 4-pyrimidinone and uracil: an ab initio study

机译:4-嘧啶酮和尿嘧啶非辐射衰变机理的比较:从头算研究

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We performed a comparative theoretical study of the relaxation mechanisms of the excited states of uracil and 4-pyrimidinone with the CASSCF, CASPT2, and CC2 ab initio methods. The calculated vertical excitation energies agree with the experimental UV absorption maxima of the two compounds. Three low-lying conical intersections between the S0 and S1 states (one for uracil, two for 4-pyrimidinone) are established. They are accessible from the Franck-Condon region of the ~1ππ* state through out-of-plane deformations related to C=C (for uracil) or C=N (for 4-pyrimidinone) torsions of the heterocyclic ring. These conical intersections mediate the radiationless deactivation of the compounds after excitation of the lowest ~1ππ* state. The relaxation of the ~1ππ* state of 4-pyrimidinone via C=C twisting is hindered by a barrier. The relaxed scan of the C=N double-bond twisting of 4-pyrimidinone indicates that the formation of the Dewar form may represent a photochemical channel in 4-pyrimidinone. This fact is detrimental for the photostability of 4-pyrimidinone, since the Dewar form is separated by a high potential-energy barrier from the canonical form of 4-pyrimidinone on the ground-state potential-energy surface, which prevents a thermal back-reaction. The investigation of the vertical excitation energies and the reaction paths shows that 4-pyrimidinone is less photostable than uracil.
机译:我们使用CASSCF,CASPT2和CC2从头算方法对尿嘧啶和4-嘧啶酮的激发态的弛豫机理进行了比较理论研究。计算出的垂直激发能与两种化合物的实验紫外吸收最大值一致。在S0和S1状态之间建立了三个低洼的圆锥形交点(一个代表尿嘧啶,两个代表4-嘧啶酮)。可通过与杂环的C = C(对于尿嘧啶)或C = N(对于4-嘧啶酮)扭转相关的平面外变形,从〜1ππ*状态的Franck-Condon区访问它们。这些锥形相交点在最低〜1ππ*态激发后介导化合物的无辐射失活。障碍阻碍了4-嘧啶酮通过C = C扭曲的〜1ππ*状态的弛豫。对4-嘧啶酮的C = N双键加捻的放松扫描表明,杜瓦形式的形成可以代表4-嘧啶酮中的光化学通道。这一事实不利于4-嘧啶酮的光稳定性,因为杜瓦形式与基态势能表面上的4-嘧啶酮的典范形式被高势能势垒隔开,从而阻止了热背反应。对垂直激发能和反应路径的研究表明,4-嘧啶酮的光稳定性低于尿嘧啶。

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