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The dynamics of OH channel in the 266 and 355 nm photodissociation of 2-nitrophenol

机译:2-硝基苯酚在266和355 nm光解中的OH通道动力学

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Photodissociation of gaseous 2-nitrophenol at 266 and 355 nm was investigated by probing the nascent OH products with the laser-induced-fluorescence (LIF) technique. Rotational state distributions of the OH photofragments were measured and characterized by Boltzmann temperatures of 900 ± 40 K and 1070 ± 80 K at 266 and 355 nm, respectively. The OH photoproducts were found to be vibrationally cold at both photolysis wavelengths. Preferential populations of the OH F1 (P3/2) spin–orbit state and P+ K-doublet state were observed at both photolysis wavelengths. We have proposed a mechanism for OH production involving the photoisomerization to form aci-nitro isomers, which then dissociate into OH fragments.
机译:通过使用激光诱导荧光(LIF)技术探测新生的OH产物,研究了气态2-硝基苯酚在266和355 nm处的光解离。分别测量了OH光片段的旋转状态分布,并通过在266和355 nm处的Boltzmann温度分别为900±40 K和1070±80 K进行了表征。发现OH光产物在两个光解波长下都在振动冷。在两个光解波长下均观察到了OH F1(P3 / 2)自旋轨道态和P + K双峰态的优先种群。我们已经提出了一种用于OH生产的机制,该机制涉及光致异构化以形成α-硝基异构体,然后其解离成OH片段。

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