Polyethylene Glycols as Efficient Media for Decarboxylative Nitration of α,β-Unsaturated Aromatic Carboxylic Acids by Ceric Ammonium Nitrate in Acetonitrile Medium: A Kinetic and Mechanistic Study

K. Ramesh, S. Shylaja, K. Rajanna, P. G. Reddy, P. Saiprakash
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引用次数: 6

Abstract

Polyethylene glycols (PEGs) were found to be efficient media for decarboxylative nitration of α,β-unsaturated aromatic carboxylic acids by ceric ammonium nitrate (CAN) in acetonitrile to give β-nitrostyrene derivatives. Kinetics of the reaction exhibited second order kinetics with a first order dependence on [CAN] and [substrate]. Reactions were too sluggish to be studied in the absence of PEG; therefore detailed kinetics were not taken up. Reaction times were reduced from 24 hrs to few hours. The catalytic activity was found to be in the increasing order PEG-300 > PEG-400 > PEG-600 > PEG-200. Mechanism of PEG-mediated reactions was explained by Menger-Portnoy's scheme as applied in micellar kinetics.
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聚乙二醇在乙腈介质中作为硝酸铈铵脱羧硝化α,β-不饱和芳香族羧酸的高效介质:动力学和机理研究
聚乙二醇(peg)是用硝酸铈铵(CAN)在乙腈中脱羧硝化得到β-硝基苯乙烯衍生物的有效介质。反应动力学表现为二级动力学,一级依赖于[CAN]和[底物]。在没有PEG的情况下,反应太慢,无法进行研究;因此详细的动力学没有被讨论。反应时间从24小时缩短到几个小时。催化活性的强弱顺序为:PEG-300 > PEG-400 > PEG-600 > PEG-200。用胶束动力学中的Menger-Portnoy方案解释了peg介导反应的机理。
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