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Mechanism of radiation-induced reactions in aqueous solution of coumarin-3-carboxylic acid: Effects of concentration, gas and additive on fluorescent product yield

机译:香豆素-3-羧酸水溶液中辐射诱导的反应机理:浓度,气体和添加剂对荧光产物收率的影响

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The radiation-induced reactions of a water-soluble coumarin derivative, coumarin-3-carboxyl acid (C3CA), have been investigated in aqueous solutions by pulse radiolysis with a 35 MeV electron beam, final product analysis following 60Co γ-irradiations and deterministic model simulations. Pulse radiolysis revealed that C3CA reacted with both hydroxyl radicals ( ?OH) and hydrated electrons (e - aq) with near diffusion-controlled rate constants of 6.8 × 10 9 and 2.1 × 10 10 M -1 s -1, respectively. The reactivity of C3CA towards O2 ?- was not confirmed by pulse radiolysis. Production of the fluorescent molecule, 7-hydroxy-coumarin-3- carboxylic acid (7OH-C3CA), was confirmed by final product analysis with a fluorescence spectrometer coupled to a high performance liquid chromatography (HPLC) system. Production yields of 7OH-C3CA following 60Co γ-irradiations depended on the irradiation conditions and ranged from 0.025 to 0.18 (100 eV) -1. Yield varied with saturating gas, additive and C3CA concentration, implying the presence of at least two pathways capable of providing 7OH-C3CA as a stable product following the scavenging reaction of C3CA with ?OH, including a peroxidation/elimination sequence and a disproportionation pathway. A reaction mechanism for the two pathways was proposed and incorporated into a deterministic simulation, showing that the mechanism can explain experimentally measured 7OH-C3CA yields with a constant conversion factor of 4.7% from ?OH scavenging to 7OH-C3CA production, unless t-BuOH was added.
机译:水溶性香豆素衍生物香豆素-3-羧酸(C3CA)在水溶液中的辐射诱导反应已通过35 MeV电子束的脉冲辐射分解,60Coγ辐射后的最终产物分析和确定性模型进行了研究模拟。脉冲辐射分解表明,C3CA与羟基自由基(?OH)和水合电子(e-aq)都发生了反应,其扩散常数分别接近6.8×10 9和2.1×10 10 M -1 s -1。脉冲放射分解未确认C3CA对O 2α-的反应性。荧光分子7-羟基香豆素3-羧酸(7OH-C3CA)的产生是通过使用与高效液相色谱(HPLC)系统耦合的荧光光谱仪进行最终产品分析来确认的。 60Coγ辐照后7OH-C3CA的产率取决于辐照条件,范围为0.025至0.18(100 eV)-1。产率随饱和气体,添加剂和C3CA浓度的变化而变化,这意味着在C3CA与αOH的清除反应之后,存在至少两种能够提供7OH-C3CA作为稳定产物的途径,包括过氧化/消除序列和歧化途径。提出了这两种途径的反应机理,并将其纳入确定性模拟中,表明该机理可以解释实验测定的从7OH清除到7OH-C3CA生成的转化率恒定为4.7%的7OH-C3CA产率,除非t-BuOH加入。

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