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有机光稳定剂的光物理性质。2-(2'-羟基苯基)苯并三唑激发态失活机制的从头算研究。

Photophysics of organic photostabilizers. Ab initio study of the excited-state deactivation mechanisms of 2-(2'-hydroxyphenyl)benzotriazole.

作者信息

Sobolewski Andrzej L, Domcke Wolfgang, Hättig Christof

机构信息

Institute of Physics, Polish Academy of Sciences, PL-02668 Warsaw, Poland.

出版信息

J Phys Chem A. 2006 May 18;110(19):6301-6. doi: 10.1021/jp0574798.

Abstract

Excited-state reaction paths and the corresponding energy profiles of 2-(2'-hydroxyphenyl)benzotriazole (TIN-H) have been determined with the CC2 (simplified singles-and-doubles coupled-cluster) ab initio method. Hydrogen transfer along the intramolecular hydrogen bond, torsion of the aromatic rings and pyramidization of the central nitrogen atom are identified as the most relevant photochemical reaction coordinates. The keto-type planar S(1) state reached by barrierless intramolecular hydrogen transfer is found to be unstable with respect to torsion. The latter mode, together with a moderate pyramidization of the central nitrogen atom, provides barrierless access to a S(1)-S(0) conical intersection. Only the pi-type orbitals of the aromatic rings are involved in the open-shell structures. The S(1)-S(0) conical intersection, which occurs for perpendicular geometry of the aromatic rings, is a pure biradical. From the conical intersection, a barrierless reaction path steers the system back to the enol-type minimum of the S(0) potential-energy surface, thus closing the photocycle. This photophysical pathway accounts for the remarkable photostability of the molecule.

摘要

采用CC2(简化单双耦合簇)从头算方法确定了2-(2'-羟基苯基)苯并三唑(TIN-H)的激发态反应路径及相应的能量分布。沿着分子内氢键的氢转移、芳环的扭转以及中心氮原子的锥形化被确定为最相关的光化学反应坐标。通过无势垒分子内氢转移达到的酮型平面S(1)态被发现相对于扭转是不稳定的。后一种模式,连同中心氮原子的适度锥形化,提供了无势垒进入S(1)-S(0)锥形交叉的途径。只有芳环的π型轨道参与开壳结构。芳环垂直几何构型时出现的S(1)-S(0)锥形交叉是一个纯双自由基。从锥形交叉处,一条无势垒反应路径将系统引导回S(0)势能面的烯醇型最小值,从而完成光循环。这种光物理途径解释了该分子显著的光稳定性。

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