首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Kinetic studies on 2,6-lutidine catalyzed peroxyoxalate chemiluminescence in organic and aqueous medium: Evidence for general base catalysis
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Kinetic studies on 2,6-lutidine catalyzed peroxyoxalate chemiluminescence in organic and aqueous medium: Evidence for general base catalysis

机译:在有机和含水介质中的2,6-施氧催化过氧氧态化学发光的动力学研究:一般碱催化证据

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The peroxyoxalate reaction, base catalyzed perhydrolysis of activated aromatic oxalate esters in the presence of chemiluminescence activators, has widespread analytical and bioanalytical applications and is one of the most efficient chemiluminescence transformations known. We report here a kinetic study on this reaction using 2,6-lutidine as catalyst in organic (1,2-dimethoxyethane) and aqueous medium. In both media, experimental conditions can be designed which lead to reproducible results important for analytical applications. Observed rate constants (determined by observing the light emission intensity as well as absorbance variation due to phenol releases) show dependence on both the 2,6-lutidine and the hydrogen peroxide concentration, indicating their participation in the rate-limiting step of the transformation. The rate constants obtained from these kinetic studies proved to be at least one order of magnitude higher in water than in 1,2-dimethoxyethane as solvent. Kinetic experiments designed to distinguish between three different types of catalysis (nucleophilic, specific base and general base catalysis) clearly indicate that the role of 2,6-lutidine in this reaction is as general base catalyst in water as well as most likely in organic medium.
机译:过氧氧态反应,基催化的活化芳族草酸酯在化学发光活化剂存在下的过水解,具有广泛的分析和生物分析应用,是已知的最有效的化学发光转化之一。我们在此报告了在有机(1,2-二甲氧基乙烷)和含水介质中使用2,6- Lutidine作为催化剂的这种反应的动力学研究。在这两种介质中,可以设计实验条件,这导致可再现的结果对于分析应用重要。观察到的速率常数(通过观察发光强度和由于苯酚释放而导致的吸光度变异确定)显示依赖于2,6- Lutidine和过氧化氢浓度,表明它们参与转化的速率限制步骤。从这些动力学研究中获得的速率常数被证明在水中的至少一个数量级,而不是1,2-二甲氧基乙烷作为溶剂。设计用于区分三种不同类型的催化(亲核,特异性碱和一般碱基)的动力学实验清楚地表明,在该反应中的2,6- Lutidine在水中的一般基础催化剂以及最有可能的有机培养基中的作用。

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