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首页> 外文期刊>Journal of the American Chemical Society >Twisted Hemithioindigo Photoswitches: Solvent Polarity Determines the Type of Light-Induced Rotations
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Twisted Hemithioindigo Photoswitches: Solvent Polarity Determines the Type of Light-Induced Rotations

机译:扭曲的半硫靛蓝光电开关:溶剂极性决定了光诱导旋转的类型

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摘要

Controlling the internal motions of molecules by outside stimuli is a decisive task for the generation of responsive and complex molecular behavior and functionality. Light-induced structural changes of photoswitches are of special high interest due to the ease of signal application and high repeatability. Typically photoswitches use one reaction coordinate in their switching process and change between two more or less-defined states. Here we report on new twisted hemithioindigo photoswitches enabling two different reaction coordinates to be used for the switching process. Depending on the polarity of the solvent, either complete single bond (in DMSO) or double bond (in cyclohexane) rotation can be induced by visible light. This mutually independent switching establishes an unprecedented two-dimensional control of intramolecular rotations in this class of photoswitches. The mechanistic explanation involves formation of highly polar twisted intramolecular charge-transfer species in the excited state and is based on a large body of experimental quantifications, most notably ultrafast spectroscopy and quantum yield measurements in solvents of different polarity. The concept of pre-twisting in the ground state to open new, independent reaction coordinates in the excited state should be transferable to other photoswitching systems.
机译:通过外部刺激控制分子的内部运动是产生响应性和复杂分子行为和功能的决定性任务。光电开关的光诱导结构变化由于信号应用的简便性和高重复性而特别引起人们的关注。通常,光开关在其开关过程中使用一个反应坐标,并在两个或多个或更少定义的状态之间切换。在这里,我们报道了新的扭曲的半硫靛蓝光电开关,该光电开关能够将两种不同的反应坐标用于开关过程。根据溶剂的极性,可见光可能会导致完全单键旋转(在DMSO中)或双键旋转(在环己烷中)。这种相互独立的开关为此类光电开关建立了前所未有的分子内旋转二维控制。机理的解释涉及在激发态下形成高极性扭曲的分子内电荷转移物质,并且基于大量的实验定量,最著名的是超快光谱学和在不同极性溶剂中的量子产率测量。在基态下预扭曲以在激发态下打开新的独立反应坐标的概念应该可以转移到其他光开关系统。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第37期|12219-12227|共9页
  • 作者单位

    Department fuer Chemie, Ludwig-Maximilians-Universitaet Muenchen, D-81377 Munich, Germany;

    Institut fuer Biomolekulare Optik, Ludwig-Maximilians-Universitaet Muenchen, D-80538 Munich, Germany;

    Institut fuer Biomolekulare Optik, Ludwig-Maximilians-Universitaet Muenchen, D-80538 Munich, Germany;

    Institut fuer Biomolekulare Optik, Ludwig-Maximilians-Universitaet Muenchen, D-80538 Munich, Germany;

    Institut fuer Biomolekulare Optik, Ludwig-Maximilians-Universitaet Muenchen, D-80538 Munich, Germany;

    Department fuer Chemie, Ludwig-Maximilians-Universitaet Muenchen, D-81377 Munich, Germany;

    Institut fuer Biomolekulare Optik, Ludwig-Maximilians-Universitaet Muenchen, D-80538 Munich, Germany;

    Department fuer Chemie, Ludwig-Maximilians-Universitaet Muenchen, D-81377 Munich, Germany;

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  • 正文语种 eng
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