n -溴代琥珀酰亚胺在H2SO4介质中胶束催化氧化葡萄糖的动力学及机理

Minu Singh
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引用次数: 1

摘要

研究了胶束催化n -溴代琥珀酰亚胺在40℃准一级条件下在H2SO4介质中氧化葡萄糖的动力学和机理。在广泛的实验条件下研究的反应结果表明,NBS对葡萄糖呈一阶、分数阶依赖性,对硫酸呈负分数阶依赖性。测定的化学计量比为1:1(葡萄糖:n -溴琥珀酰亚胺)。Hg(OAC)2和琥珀酰亚胺(反应产物)的变化对反应速率的影响不显著。研究了表面活性剂、添加的丙烯腈、添加的盐类以及溶剂组成的变化对反应的影响。计算了Arrhenius活化能和其他热力学活化参数。根据所获得的数据推导出了速率定律。从动力学研究、反应化学计量学和产物分析的结果,提出了一个合理的机理。阴离子胶束和非离子胶束的作用用Berezin的模型最好地解释了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetics and Mechanism of Micellar Catalyzed Oxidation of Dextrose by N-Bromosuccinimide in H2SO4 Medium
Kinetics and mechanism of micellar catalyzed N-bromosuccinimide oxidation of dextrose in H2SO4 medium was investigated under pseudo-first-order condition temperature of 40°C. The results of the reactions studied over a wide range of experimental conditions show that NBS shows a first order dependence, fractional order, on dextrose and negative fractional order dependence on sulfuric acid. The determined stoichiometric ratio was 1 : 1 (dextrose : N-bromosuccinimide). The variation of Hg(OAC)2 and succinimide (reaction product) has insignificant effect on reaction rate. Effects of surfactants, added acrylonitrile, added salts, and solvent composition variation have been studied. The Arrhenius activation energy and other thermodynamic activation parameters are evaluated. The rate law has been derived on the basis of obtained data. A plausible mechanism has been proposed from the results of kinetic studies, reaction stoichiometry, and product analysis. The role of anionic and nonionic micelle was best explained by the Berezin’s model.
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