首页> 外文期刊>Indian Journal of Chemistry, Section A. Inorganic, Physical, Theoretical & Analytical >Kinetics and mechanism of oxidation of formic and oxalic acids by tetrakis(pyridine) silver dichromate
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Kinetics and mechanism of oxidation of formic and oxalic acids by tetrakis(pyridine) silver dichromate

机译:四(吡啶)重铬酸银氧化甲酸和草酸的动力学和机理

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Kinetics and mechanism of oxidation of formic and oxalic acids by tetrakis(pyridine) silver dichromate (TPSD).in DMSO have been studied. The main product of oxidation is carbon dioxide. The reaction is first order each with respect to TPSD and the organic acids. The reaction is acid-catalysed and the acid dependence has the form, k_(obs) = a + b[H~+]. The oxidation of α-deuterioformic acid exhibits a substantial primary kinetic isotope effect (k_H/k_D = 5. 65 at 298 K). The reaction has been studied in nineteen different organic solvents and the solvent effect has been analysed using Taft's and Swain's multiparametric equations. The temperature dependence of the kinetic isotope effect indicates the presence of a symmetrical cyclic transition state in the rate determining step. Suitable mechanisms have been proposed.
机译:研究了四(吡啶)重铬酸银(TPSD)在DMSO中氧化甲酸和草酸的动力学和机理。氧化的主要产物是二氧化碳。关于TPSD和有机酸,该反应是一级的。该反应是酸催化的,并且酸依赖性具有以下形式:k_(obs)= a + b [H〜+]。 α-氘代甲酸的氧化反应显示出基本的一级动力学同位素效应(在298 K下k_H / k_D = 5. 65)。已在19种不同的有机溶剂中研究了该反应,并使用塔夫脱(Taft)和斯文(Swain)多参数方程分析了溶剂的作用。动力学同位素效应的温度依赖性表明在速率确定步骤中存在对称的循环过渡态。已经提出了合适的机制。

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