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Nonadiabatic Dynamics Simulation of the Wavelength-Dependent Photochemistry of Azobenzene Excited to the nπ* and ππ* Excited States

机译:偶氮苯杂交的非抗体动力学模拟对Nπ*和ππ*激发态的波长依赖性光化学

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摘要

Azobenzene is one of the most ubiquitous photoswitches in photochemistry and a prototypical model for photoisomerizing systems. Despite this, its wavelength-dependent photochemistry has puzzled researchers for decades. Upon excitation to the higher energy ππ* excited state instead of the dipole-forbidden nπ* state, the quantum yield of isomerization from trans- to cis-azobenzene is halved. The difficulties associated with unambiguously resolving this effect both experimentally and theoretically have contributed to lasting controversies regarding the photochemistry of azobenzene. Here, we systematically characterize the dynamic photoreaction pathways of azobenzene by performing first-principles simulations of the nonadiabatic dynamics following excitation to both the ππ* and the nπ* states. We demonstrate that ground-state recovery is mediated by two distinct S_1 decay pathways: a reactive twisting pathway and an unreactive planar pathway. Increased preference for the unreactive pathway upon ππ* excitation largely accounts for the wavelength-dependent behavior observed in azobenzene.
机译:偶氮苯是光明化学中最无处不在的照片开关之一,以及用于光硅酸系统的原型模型。尽管如此,它的波长依赖性光化学已经困惑了研究人员数十年。在激发到较高的能量ππ*激发状态而不是偶极禁止的Nπ*状态,从转体到CIS-偶氮苯的量子化的量子产率降低。与实际和理论上的明确解决这一效果有关的困难是有助于持续有关偶氮苯的光明的争议。这里,我们通过对πI*和nπ*状态进行激发后,通过执行非等级动力学的第一原理模拟来系统地表征偶氮苯的动态光反应途径。我们证明了地面恢复由两个不同的S_1衰变通路介导:反应性扭转途径和不反应的平面途径。对ππ*激发的不反应途径的偏好增加了很大程度上估计在偶氮苯中观察到的波长依赖性的行为。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第49期|20680-20690|共11页
  • 作者单位

    Biophysics Program and Department of Chemistry and The PULSE Institute Stanford University Stanford California 94305 United States SLAC National Accelerator Laboratory Menlo Park California 94025 United States;

    Department of Chemistry and The PULSE Institute Stanford University Stanford California 94305 United States SLAC National Accelerator Laboratory Menlo Park California 94025 United States;

    Department of Chemistry and The PULSE Institute Stanford University Stanford California 94305 United States SLAC National Accelerator Laboratory Menlo Park California 94025 United States;

    Department of Chemistry and The PULSE Institute Stanford University Stanford California 94305 United States SLAC National Accelerator Laboratory Menlo Park California 94025 United States;

    Biophysics Program and Department of Chemistry and The PULSE Institute Stanford University Stanford California 94305 United States SLAC National Accelerator Laboratory Menlo Park California 94025 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 23:00:59

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