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偶氮苯和桥联偶氮苯的反式-顺式光异构化的比较研究。

Comparative studies of the trans-cis photoisomerizations of azobenzene and a bridged azobenzene.

机构信息

Ministry of Education Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, and Department of Applied Physics, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

J Phys Chem A. 2011 Jan 27;115(3):244-9. doi: 10.1021/jp107991a. Epub 2010 Dec 17.

DOI:10.1021/jp107991a
PMID:21166403
Abstract

Using density-functional-based molecular dynamics simulations, we have performed comparative studies of the trans-cis isomerizations of azobenzene and bridged azobenzene (B-Ab) 5,6-dihydrodibenzo[c,g][1,2]diazocine induced by nπ* electronic excitation. The quantum yields found in our calculations, 45% for the bridged azobenzene versus 25% for azobenzene, are consistent with the experiment. Both isomerization processes involve two steps: (1) Starting from the trans structure, each molecule moves on its S(1) excited-state potential energy surface, via rotation around the NN bond, to an avoided crossing near the S(1)/S(0) conical intersection, where de-excitation occurs. (2) Subsequently, in the electronic ground state, there is further rotation around the NN bond, accompanied by twisting of the phenyl rings around their CN bonds, until the cis geometry is achieved. Because of its lower symmetry and smaller initial CNNC dihedral angle, the bridged azobenzene has a much shorter lifetime for the S(1) excited state, about 30 fs, as compared to about 400 fs for azobenzene. However, we find that the complete isomerizations have approximately the same time scales. Although the bridging feature in trans-B-Ab does not hinder rotation around the NN bond in step 1, it makes twisting of the two phenyl rings around the CN bonds much slower in step 2.

摘要

利用密度泛函分子动力学模拟,我们对受 nπ* 电子激发诱导的偶氮苯和桥联偶氮苯(B-Ab)5,6-二氢二苯并[c,g][1,2]二氮杂环庚烯的顺反异构化进行了比较研究。我们计算得到的量子产率分别为 45%(桥联偶氮苯)和 25%(偶氮苯),与实验结果一致。这两个异构化过程都涉及两个步骤:(1)从反式结构开始,每个分子通过 NN 键的旋转,在 S(1)激发态势能表面上移动,到达 S(1)/S(0)锥形交叉点附近的避免交叉点,在那里发生去激发。(2)随后,在电子基态下,NN 键进一步旋转,同时苯环围绕它们的 CN 键扭曲,直到达到顺式构象。由于桥联偶氮苯的对称性较低,初始 CNNC 二面角较小,其 S(1)激发态的寿命较短,约为 30 fs,而偶氮苯的寿命约为 400 fs。然而,我们发现完全异构化的时间尺度大致相同。尽管在 trans-B-Ab 中桥联特征不会阻碍 NN 键在步骤 1 中的旋转,但它使两个苯环围绕 CN 键的扭曲在步骤 2 中变得更加缓慢。

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