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首页> 外文期刊>The Journal of Chemical Physics >Enhanced photoswitching of bridged azobenzene studied by nonadiabatic ab initio simulation
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Enhanced photoswitching of bridged azobenzene studied by nonadiabatic ab initio simulation

机译:非绝热从头算研究模拟增强桥连偶氮苯的光开关

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摘要

Photoisomerization of a bridged azobenzene derivative (AB-C_2) is studied by nonadiabatic ab initio molecular dynamics simulation. The effect of the alkyl bridge linking the two phenyl rings on the Z → E and E → Z photoisomerization pathways and efficiencies is analyzed by detailed comparison to the unbridged parent compound. It is found that the bridge makes E → Z photoisomerization considerably faster and increases its quantum yield, whereas Z → E photoswitching is slightly hindered and has a significantly lower quantum yield although still being ultrafast. The simulations reveal that unsuccessful Z → E photoisomerization attempts can interconvert two pro-enantiomeric forms of Z-AB-C_2 via pseudorotation in the excited electronic state.
机译:通过非绝热从头算分子动力学模拟研究了桥接的偶氮苯衍生物(AB-C_2)的光异构化。通过与未桥连的母体化合物进行详细比较,分析了连接两个苯环的烷基桥对Z→E和E→Z光异构化途径和效率的影响。发现该桥使得E→Z的光异构化相当快并且增加了其量子产率,而Z→E的光开关稍微受到了阻碍,并且尽管仍然是超快的,但是具有显着较低的量子产率。模拟结果表明,不成功的Z→E光异构化尝试可以在激发电子状态下通过伪旋转将Z-AB-C_2的两种对映异构形式互变。

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