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Study of the S_1 Excited State of para-Methoxy-3-phenyl-3-methyl Diazirine by Ultrafast Time Resolved UV-Vis and IR Spectroscopies and Theory

机译:超快时间分辨UV-Vis和IR光谱学和理论研究对甲氧基-3-苯基-3-甲基重氮的S_1激发态

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摘要

Ultrafast laser flash photolysis (λ_(ex) = 375 nm) of para-methoxy-3-phenyl-3-methyl diazirine (p-CH_3OC_6H_4CN_2CH_3) produced a transient absorption band in the 400-700 nm region. The carrier of the transient absorption is assigned to the S_1 electronic excited state of this compound based on quantum chemical calculations. The strongest vibrational mode of this S_1 excited state, predicted by RI-CC2/TZVP calculations, was directly observed in the mid-infrared region and had the same lifetime as the transient absorption band detected in the visible region, confirming that the same species is responsible for both transient spectra. The S_1 state undergoes solvation within 20 ps after its formation in polar solvents. Decay of the S_1 state leads to the formation of the isomeric diazo compound and singlet carbene. With 270 nm excitation, both singlet carbene and diazo compound are formed in a much more rapid process from the initially populated diazirine S_2 state (<4 ps), in competition with internal conversion to the S_1 state. The ultrafast spectroscopy and quantum calculations presented in this study provide a rather complete and consistent understanding of the structures and the decay kinetics of the excited states of an aryldiazirine and provide some conclusive answers to the pending general mechanistic questions concerning the photoisomerization of diazirine into diazo compound and the denitrogenation into carbenes.
机译:对甲氧基-3-苯基-3-甲基重氮(p-CH_3OC_6H_4CN_2CH_3)的超快激光闪光光解(λ_(ex)= 375 nm)在400-700 nm区域产生瞬态吸收带。基于量子化学计算,该瞬态吸收的载体被赋予该化合物的S_1电子激发态。通过RI-CC2 / TZVP计算预测,此S_1激发态的最强振动模式直接在中红外区域观察到,并具有与在可见光区域检测到的瞬态吸收带相同的寿命,从而证实了相同的物种是负责两个瞬态光谱。 S_1状态在极性溶剂中形成后在20 ps内发生溶剂化。 S_1状态的衰变导致异构重氮化合物和单线态卡宾的形成。在270 nm激发下,单峰碳烯和重氮化合物从初始填充的重氮S_2状态(<4 ps)以更快的速度形成,与内部转化为S_1状态竞争。本研究中介绍的超快速光谱学和量子计算提供了对芳基二叠氮基的激发态的结构和衰变动力学的相当完整和一致的理解,并为有关重氮向光重异构化为重氮化合物的未决一般力学问题提供了结论性答案。然后脱氮为卡宾。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第38期|13784-13790|共7页
  • 作者单位

    Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio, 43210;

    Quantum Electronics Laboratory, Faculty of Physics, Adam Mickiewicz University, 85 Umultowska, Poznan 61-614;

    Quantum Electronics Laboratory, Faculty of Physics, Adam Mickiewicz University, 85 Umultowska, Poznan 61-614;

    Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio, 43210;

    Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio, 43210;

    Universite des Sciences et Technologies de Lille, Lille 59655, France;

    Universite des Sciences et Technologies de Lille, Lille 59655, France;

    Universite des Sciences et Technologies de Lille, Lille 59655, France;

    Department of Chemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio, 43210;

  • 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);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:18

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