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Spectroscopic Observation of the Resonance-Stabilized 1-Phenylpropargyl Radical

机译:共振稳定的1-苯基炔丙基自由基的光谱观察

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The gas-phase laser-induced fluorescence (LIF) spectrum of a 1-phenylpropargyl radical has been identified in the region 20800-22000 cm~(-1) in a free jet. The radical was produced from discharges of hydrocarbons including benzene. Disregarding C_2, C_3, and CH, this radical appears as the most strongly fluorescing product in a visible wavelength two-dimensional fluorescence excitation-emission spectrum of a jet-cooled benzene discharge. The structure of the carrier was elucidated by measurement of a matching resonant two-color two-photon ionization spectrum at m/z = 115 and density functional theory. The assignment was proven conclusively by observation of the same excitation spectrum from a low-current discharge of 3-phenyl-1-propyne. The apparent great abundance of the 1-phenylpropargyl radical in discharges of benzene and, more importantly, 1-hexyne may further underpin the proposed importance of the propargyl radical in the formation of complex hydrocarbons in combustion and circumstellar environments.
机译:在自由射流中,在20800-22000 cm〜(-1)区域中已鉴定出1-苯基炔丙基的气相激光诱导荧光(LIF)光谱。自由基是由包括苯在内的碳氢化合物的排放产生的。不考虑C_2,C_3和CH,该自由基在喷射冷却的苯放电的可见波长二维荧光激发-发射光谱中显示为最强的荧光产物。通过在m / z = 115处测量匹配的共振双色双光子电离光谱和密度泛函理论,阐明了载体的结构。通过观察3-苯基-1-丙炔的低电流放电得到的相同激发光谱,最终证明了该分配。苯排放物中1-苯基炔丙基的表观丰度很大,更重要的是,1-己炔可能进一步证明了炔丙基在燃烧和绕星环境中形成复杂烃时的重要性。

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