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Kinetics and Mechanism of the Reaction between Chromium(III) and 2,3-Dihydroxybenzoic Acid in Weak Acidic Aqueous Solutions

机译:弱酸性水溶液中铬(III)与2,3-二羟基苯甲酸反应的动力学和机理

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摘要

The reaction between chromium(III) and 2,3-dihydroxybenzoic acid (2,3-DHBA) takes place in at least three stages, involving various intermediates. The ligand (2,3-DHBA)-to-chromium(III) ratio in the final product of the reaction is 1 : 1. The first stage is suggested to be the reaction of [Cr(H2O)5(OH)]2+ with the ligand in weak acidic aqueous solutions that follows an Id mechanism. The second and third stages do not depend on the concentrations of chromium(III), and their activation parameters are ΔH≠2(obs) = 61.2 ± 3.1 kJmol−1, ΔS≠2(obs) = −91.1 ± 11.0 JK−1mol−1, ΔH≠3(obs) = 124.5 ± 8.7 kJmol−1, and ΔS≠3(obs) = 95.1 ± 29.0 JK−1mol−1. These two stages are proposed to proceed via associative mechanisms. The positive value of ΔS≠3(obs) can be explained by the opening of a four-membered ring (positive entropy change) and the breaking of a hydrogen bond (positive entropy change) at the associative step of the replacement of the carboxyl group by the hydroxyl group at the chromium(III) center (negative entropy change in associative mechanisms). The reactions are accompanied by proton release, as shown by the pH decrease.
机译:铬(III)与2,3-二羟基苯甲酸(2,3-DHBA)之间的反应至少分三个阶段进行,涉及各种中间体。反应终产物中的配体(2,3-DHBA)与铬(III)之比为1 :: 1,建议第一步为[Cr(H2O)5(OH)] 2反应+在弱酸性水溶液中的配体遵循Id机理。第二阶段和第三阶段不依赖于铬(III)的浓度,其活化参数为ΔH≠2(obs)= 61.2±3.1 kJmol-1,ΔS≠2(obs)= -91.1±11.0 JK-1mol -1,ΔH≠3(obs)= 124.5±8.7 kJmol-1,并且ΔS≠3(obs)= 95.1±29.0 JK-1mol-1。建议通过关联机制进行这两个阶段。 ΔS≠3(obs)的正值可以通过在取代羧基的缔合步骤中四元环的开环(正熵变化)和氢键的断裂(正熵变化)来解释。通过铬(III)中心的羟基(缔合机理的负熵变化)。反应伴随质子释放,如pH降低所示。

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