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水溶液中尿嘧啶和胸腺嘧啶的单重激发态行为:11种尿嘧啶衍生物的实验与计算联合研究

Singlet excited-state behavior of uracil and thymine in aqueous solution: a combined experimental and computational study of 11 uracil derivatives.

作者信息

Gustavsson Thomas, Bányász Akos, Lazzarotto Elodie, Markovitsi Dimitra, Scalmani Giovanni, Frisch Michael J, Barone Vincenzo, Improta Roberto

机构信息

Laboratoire Francis Perrin, CEA/DSM/DRECAM/SPAM - CNRS URA 2453, CEA Saclay, Gif-sur-Yvette, France.

出版信息

J Am Chem Soc. 2006 Jan 18;128(2):607-19. doi: 10.1021/ja056181s.

Abstract

The excited-state properties of uracil, thymine, and nine other derivatives of uracil have been studied by steady-state and time-resolved spectroscopy. The excited-state lifetimes were measured using femtosecond fluorescence upconversion in the UV. The absorption and emission spectra of five representative compounds have been computed at the TD-DFT level, using the PBE0 exchange-correlation functional for ground- and excited-state geometry optimization and the Polarizable Continuum Model (PCM) to simulate the aqueous solution. The calculated spectra are in good agreement with the experimental ones. Experiments show that the excited-state lifetimes of all the compounds examined are dominated by an ultrafast (<100 fs) component. Only 5-substituted compounds show more complex behavior than uracil, exhibiting longer excited-state lifetimes and biexponential fluorescence decays. The S(0)/S(1) conical intersection, located at CASSCF (8/8) level, is indeed characterized by pyramidalization and out of plane motion of the substituents on the C5 atom. A thorough analysis of the excited-state Potential Energy Surfaces, performed at the PCM/TD-DFT(PBE0) level in aqueous solution, shows that the energy barrier separating the local S(1) minimum from the conical intersection increases going from uracil through thymine to 5-fluorouracil, in agreement with the ordering of the experimental excited-state lifetime.

摘要

通过稳态和时间分辨光谱研究了尿嘧啶、胸腺嘧啶以及其他九种尿嘧啶衍生物的激发态性质。利用紫外飞秒荧光上转换测量了激发态寿命。使用PBE0交换相关泛函对基态和激发态几何结构进行优化,并采用极化连续介质模型(PCM)模拟水溶液,在TD-DFT水平上计算了五种代表性化合物的吸收光谱和发射光谱。计算得到的光谱与实验光谱吻合良好。实验表明,所有检测化合物的激发态寿命均由超快(<100 fs)成分主导。只有5-取代化合物表现出比尿嘧啶更复杂的行为,具有更长的激发态寿命和双指数荧光衰减。位于CASSCF(8/8)水平的S(0)/S(1)锥形交叉点确实表现为C5原子上取代基的锥形化和面外运动。在水溶液中PCM/TD-DFT(PBE0)水平上对激发态势能面进行的全面分析表明,从尿嘧啶到胸腺嘧啶再到5-氟尿嘧啶,将局部S(1)最小值与锥形交叉点分开的能垒增加,这与实验激发态寿命的顺序一致。

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