首页> 美国卫生研究院文献>Bioinorganic Chemistry and Applications >Kinetics and Mechanism of the Reaction between Chromium(III) and 34-Dihydroxy-Phenyl-Propenoic Acid (Caffeic Acid) in Weak Acidic Aqueous Solutions
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Kinetics and Mechanism of the Reaction between Chromium(III) and 34-Dihydroxy-Phenyl-Propenoic Acid (Caffeic Acid) in Weak Acidic Aqueous Solutions

机译:弱酸性水溶液中铬(III)与34-二羟基苯基-丙酸(咖啡酸)反应的动力学和机理

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摘要

Our study of the complexation of 3,4-dihydroxy-phenyl-propenoic acid by chromium(III) could give information on the way that this metal ion is available to plants. The reaction between chromium(III) and 3,4-dihydroxy-phenyl-propenoic acid in weak acidic aqueous solutions has been shown to take place by at least three stages. The first stage corresponds to substitution (I d mechanism) of water molecule from the Cr(H2O)5OH2+ coordination sphere by a ligand molecule. A very rapid protonation equilibrium, which follows, favors the aqua species. The second and the third stages are chromium(III) and ligand concentration independent and are attributed to isomerisation and chelation processes. The corresponding activation parameters are ΔH 2(obs) = 28.6 ± 2.9 kJ mol−1, ΔS 2(obs) = −220 ± 10 J K−1mol−1, ΔH 3(obs) = 62.9 ± 6.7 kJ mol−1 and ΔS 3(obs) = −121 ± 22 J K−1mol−1. The kinetic results suggest associative mechanisms for the two steps. The associatively activated substitution processes are accompanied by proton release causing pH decrease.
机译:我们对3,4-二羟基苯基-丙酸与铬(III)的络合研究可以提供有关该金属离子可用于植物的方式的信息。铬(III)与3,4-二羟基-苯基-丙酸在弱酸性水溶液中的反应已显示至少经过三个阶段。第一阶段对应于水分子从Cr(H2O)5OH 2 + 配位球被配体分子取代(Id机制)。随之而来的非常快速的质子平衡有利于水族物种。第二阶段和第三阶段是独立于铬(III)和配体浓度的,归因于异构化和螯合过程。相应的激活参数为ΔH2(obs) = 28.6±2.9 kJ mol -1 ,ΔS2(obs) = −220 ±10 JK −1 mol −1 ,ΔH3(obs) = 62.9±6.7 kJ mol −1 和ΔS3(obs) = −121±22 JK -1 mol -1 。动力学结果表明这两个步骤的关联机制。伴随活化的取代过程伴随有质子释放引起pH降低。

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