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Trapping chlorine radicals via substituting nitro radicals in the gas phase

机译:通过在气相中取代硝基自由基来捕获氯自由基

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Although chlorine radicals are strong atmospheric oxidants, their direct spectroscopic detection in the environment (gas phase) using conventional analytical techniques has not been reported. Herein, chlorine radicals (Cl˙), generated by the YAG laser photolysis (λ = 355 nm) of Cl2 in the gas phase, were captured by using 2,2-diphenyl-1-picrylhydrazyl (DPPH˙). The product was identified as DPPH, wherein NO2 was substituted by Cl˙ at the ortho-carbon on the picryl aromatic ring, and was characterized using ion attachment ionization-quadrupole mass spectrometry. This reaction mechanism is a rare example of the detection and characterization of radical species, where radical spin densities on trapping reagents and frontier orbital interactions play important roles...
机译:尽管氯自由基是强大气中的氧化剂,但尚未报道使用常规分析技术在环境(气相)中对其进行直接光谱检测。在此,通过使用2,2-二苯基-1-吡啶并肼基(DPPH 3)捕获气相中Cl 2的YAG激光光解(λ= 355nm)产生的氯自由基(Cl 3)。产物被鉴定为DPPH,其中NO 2在苦味芳环上的邻碳上被Cl 3取代,并用离子附着电离-四极杆质谱法表征。这种反应机理是检测和表征自由基种类的罕见例子,其中捕获试剂上的自由基自旋密度和边界轨道相互作用起着重要的作用。

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