Guan Pei-Jie, Cui Ganglong, Fang Qiu
Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875 (China).
Chemphyschem. 2015 Mar 16;16(4):805-11. doi: 10.1002/cphc.201402743. Epub 2015 Jan 8.
We employed the complete active space self-consistent field (CASSCF) and its multistate second-order perturbation (MS-CASPT2) methods to explore the photochemical mechanism of 2-hydroxyazobenzene, the molecular scaffold of Sudan I and Orange II dyes. It was found that the excited-state intramolecular proton transfer (ESIPT) along the bright diabatic (1) ππ* state is barrierless and ultrafast. Along this diabatic (1) ππ* relaxation path, the system can jump to the dark (1) nπ* state via the (1) ππ*/(1) nπ* crossing point. However, ESIPT in this dark state is largely inhibited owing to a sizeable barrier. We also found two deactivation channels that decay (1) ππ* keto and (1) nπ* enol species to the ground state via two energetically accessible S1 /S0 conical intersections. Finally, we encountered an interesting phenomenon in the excited-state hydrogen-bonding strength: it is reinforced in the (1) ππ* state, whereas it is reduced in the (1) nπ* state. The present work sets the stage for understanding the photophysics and photochemistry of Sudan I-IV, Orange II, Ponceau 2R, Ponceau 4R, and azo violet.
我们采用完全活性空间自洽场(CASSCF)及其多态二阶微扰(MS-CASPT2)方法,探究了苏丹红I和橙黄II染料的分子骨架2-羟基偶氮苯的光化学机理。研究发现,沿明亮非绝热(1)ππ态的激发态分子内质子转移(ESIPT)无势垒且超快。沿着这条非绝热(1)ππ弛豫路径,体系可通过(1)ππ*/(1)nπ交叉点跃迁到暗(1)nπ态。然而,由于存在相当大的势垒,该暗态中的ESIPT受到很大抑制。我们还发现了两个失活通道,它们通过两个能量上可及的S1/S0锥形交叉点,将(1)ππ酮态和(1)nπ烯醇态衰减至基态。最后,我们在激发态氢键强度方面遇到了一个有趣的现象:它在(1)ππ态增强,而在(1)nπ态减弱。目前的工作为理解苏丹红I-IV、橙黄II、丽春红2R、丽春红4R和偶氮紫的光物理和光化学奠定了基础。