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Solvent Effects on Photoreactivity of Valerophenone: A Combined QM and MM Study

机译:溶剂对戊二酮光反应性的影响:QM和MM组合研究

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Norrish type reactions for valerophenone in aqueous solution have been investigated by using the combined methods of DFT, CASSCF, and CASPT2 with molecular mechanics. It was found that formation of the intermolecular hydrogen bond in the complex of valerophenonewithwater results in a blue shift of the n,π* excited states,while theCoulombinteraction between valerophenone and the bulk surrounding water is mainly responsible for the red shift of the π,π* excited states.As a result, the 3ππ* state becomes the lowest triplet state and is responsible for the long triplet lifetime observed for aqueous valerophenone. The 1nπ*, 3ππ*, and 3nπ* states were found to intersect in the same structural region, which appears to be themain reasonwhy the intersystemcrossing from1nπ* to3nπ* is very efficient for aqueous valerophenone and why most aromatic ketones have unique photophysical features such as a short singlet lifetime, high phosphorescence, and weak fluorescence. The Coulomb interaction between valerophenone and the bulk surrounding water has a significant influence on the R-C-C cleavage and the 1,5-Hshift reaction. The 1,5-Hshift is predicted to have a very small barrier on the triplet pathway and the R-C-C bond cleavages are not in competition with the 1,5-H shift reaction. This is in good agreement with the experimental findings that Norrish type II quantum yield is close to unity upon photoexcitation of aqueous valerophenone in the wavelength region of 290-330 nm.
机译:通过将DFT,CASSCF和CASPT2与分子力学相结合的方法研究了水溶液中戊二酮的Norrish型反应。研究发现,戊二酮与水的复合物中分子间氢键的形成导致n,π*激发态发生蓝移,而戊二酮与周围大量水之间的库仑相互作用是π,π发生红移的主要原因。 *激发态,结果3ππ*态变为最低的三重态,并导致在水性戊二酮中观察到较长的三重态寿命。发现1nπ*,3ππ*和3nπ*态在相同的结构区域内相交,这似乎是为什么从1nπ*到3nπ*的体系间交叉对于水性戊苯酮非常有效的原因,以及为什么大多数芳香族酮具有独特的光物理特征,例如单线态寿命短,高磷光和弱荧光。戊二酮与周围大量水之间的库仑相互作用对R-C-C裂解和1,5-Hshift反应有重大影响。预测1,5-Hshift在三重态途径上具有非常小的屏障,并且R-C-C键断裂与1,5-H转变反应不竞争。这与实验发现:在290-330 nm波长范围内对水性戊苯酮进行光激发时,Norrish II型量子产率接近于1。

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