首页> 外文期刊>Inorganica Chimica Acta >Mechanistic aspects of uncatalyzed and ruthenium(III) catalyzed oxidation of DL-ornithine monohydrochloride by silver(III) periodate complex in aqueous alkaline medium
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Mechanistic aspects of uncatalyzed and ruthenium(III) catalyzed oxidation of DL-ornithine monohydrochloride by silver(III) periodate complex in aqueous alkaline medium

机译:碱性介质中高碘酸银(III)络合物未催化和钌(III)催化DL-鸟氨酸一盐酸盐氧化的机理

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摘要

The oxidation of an amino acid, DL-ornithine monohydrochloride (OMH) by diperiodatoargentate(III) (DPA) was carried out both in the absence and presence of ruthenium(III) catalyst in alkaline medium at 25°C and a constant ionic strength of 0.10 mol dm~(-3) spectrophorometrically. The reaction was of first order in both catalyzed and uncatalyzed cases, with respect to [DPA] and was less than unit order in [OMH] and negative fraction in [alkali]. The order with respect to [OMH] changes from first order to zero order as the [OMH] increases. The order with respect to Ru(III) was unity. The uncatalyzed reaction in alkaline medium has been shown to proceed via a DPA-OMH complex, which decomposes in a rate determining step to give the products. Where as in catalyzed reaction, it has been shown to proceed via a Ru(III)-OMH complex, which further reacts with two molecules of DPA in a rate determining step to give the products. The reaction constants involved in the different steps of the mechanisms were calculated for both the reactions. The catalytic constant (K_(cat.const.)) was also calculated for catalyzed reaction at different temperatures. The activation parameters with respect to slow step of the mechanism and also the thermodynamic quantities were determined.
机译:在存在和不存在钌(III)催化剂的情况下,在25°C的碱性介质中和恒定的离子强度下,在无钌(III)催化剂的存在下,通过二硫代戊二酸(III)(DPA)氧化氨基酸DL-鸟氨酸一盐酸盐(OMH)。分光光度法为0.10 mol dm〜(-3)。相对于[DPA],该反应在催化和未催化的情况下均为一级反应,在[OMH]中反应小于单位反应,在[碱]反应中反应为负反应。随着[OMH]增加,关于[OMH]的顺序从一阶变为零阶。关于Ru(III)的顺序是统一的。已经表明,在碱性介质中的未催化反应是通过DPA-OMH络合物进行的,该络合物在速率确定步骤中分解得到产物。在催化反应中,已证明它是通过Ru(III)-OMH配合物进行的,该配合物在速率确定步骤中进一步与两个DPA分子反应生成产物。对于两个反应,计算了在机理的不同步骤中涉及的反应常数。还计算了在不同温度下催化反应的催化常数(K_(cat.const。))。确定了关于该机构的慢步的激活参数以及热力学量。

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