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Structural dynamics of photochemical reactions probed by time-resolved photoelectron spectroscopy using high harmonic pulses

机译:使用高谐波脉冲的时间分辨光电子能谱探测光化学反应的结构动力学

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摘要

Femtosecond ring-opening dynamics of 1,3-cyclohexadiene (CHD) in gas phase upon two-photon excitation at 400 nm (=3.1 eV) was investigated by time-resolved photoelectron spectroscopy using 42 nm (=29.5 eV) high harmonic photons probing the dynamics of the lower-lying occupied molecular orbitals (MOs), which are the fingerprints of the molecular structure. After 500 fs, the photoelectron intensity of the MO constituting the C=C sigma bond (sigma(C=C)) of CHD was enhanced, while that of the MO forming the C-C sigma bond (sigma(CC)) of CHD was decreased. The changes in the photoelectron spectra suggest that the ring of CHD opens to form a 1,3,5-hexatriene (HT) after 500 fs. The dynamics of the sigma(C=C) and sigma(CC) bands between 200 and 500 fs reflects the ring deformation to a conical intersection between the 2(1)A and 1(1)A potential energy surfaces prior to the ring-opening reaction.
机译:通过使用42 nm(= 29.5 eV)高谐波光子探测的时间分辨光电子能谱研究了在400 nm(= 3.1 eV)的双光子激发下气相中1,3-环己二烯(CHD)的飞秒开环动力学下方占据分子轨道(MOs)的动力学,这是分子结构的指纹。在500 fs之后,增强了CHD的C = C sigma键(sigma(C = C))的MO的光电子强度,而降低了CHD的CC sigma键(sigma(CC))的MO的光电子强度。 。光电子能谱的变化表明,在500 fs后,CHD的环打开形成1,3,5-己三烯(HT)。在200至500 fs之间的sigma(C = C)和sigma(CC)带的动力学将环变形反映为2(1)A和1(1)A势能面之间的圆锥形交点,然后再进行环计算。开放反应。

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