Kinetics and Mechanism of the Reaction of Copper(II)-tryptophan Complex with Ninhydrin in Aqueous and Micellar Media

Kabir-ud-din, M. Akram, Z. Khan
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引用次数: 9

Abstract

Kinetics of the title reaction has been investigated spectrophotometrically in aqueous solution as well as in the presence of cetyltrimethylammonium bromide (CTAB) cationic micelles. The reaction rate is first- and fractional-order with respect to [substrate] and [ninhydrin], respectively, both in the absence and presence of cationic micelles. Whereas SDS addition shows formation of a different product, the reaction of copper(II)-tryptophan complex with ninhydrin is catalyzed by CTAB: the maximum rate enhancement being ca . 5-fold. The data are interpreted in terms of the pseudo-phase model (assuming the association/incorporation of both the reactants at the micellar surface). The binding constants of copper(II)-tryptophan ( K S ) and ninhydrin ( K N ) with CTAB micelles have been calculated. The presence of inorganic salts (NaCl, NaBr, NaNO 3 and Na 2 SO 4 ) leads to a decrease in the rate followed by an increase and it is found that tightly bound/incorporated anions are most effective.
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铜(II)-色氨酸配合物与茚三酮在水溶液和胶束介质中的反应动力学及机理
用分光光度法研究了在水溶液和十六烷基三甲基溴化铵(CTAB)阳离子胶束存在下标题反应的动力学。在没有和存在阳离子胶束的情况下,对[底物]和[茚三酮]的反应速率分别为一级和分数级。而加入SDS生成不同的产物,铜(II)-色氨酸配合物与茚三酮的反应是由CTAB催化的:最大的速率提高为ca。5倍。数据用伪相模型解释(假设两种反应物在胶束表面结合)。计算了铜(II)-色氨酸(K S)和茚三酮(K N)与CTAB胶束的结合常数。无机盐(NaCl, NaBr, nano3和na2so4)的存在导致反应速率先降低后增加,并且发现紧密结合的阴离子最有效。
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