首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Oxidation of tiron by (pyrophosphato)manganese(III). Kinetics and mechanism
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Oxidation of tiron by (pyrophosphato)manganese(III). Kinetics and mechanism

机译:(焦磷酸根)锰(III)氧化铁。动力学与机理

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The kinetics of oxidation of 4,5-dihydroxy-1,3-benzenedisulfonic acid (Tiron) by tris(pyrophosphato)manganese(III) in aqueous solution has been studied by the stopped-flow technique in the pH interval 1-6. Rapid-scan UV-Vis spectrophotometry in the 2-70 ms range revealed two parallel reactions, namely oxidation to the o-quinone and disproportionation to manganese(II) and soluble manganese(IV). The redox reaction exhibits first-order kinetics in both Mn~(III) and Tiron in the whole pH range investigated. The second-order rate constant shows a marked pH dependence with a maximum at pH = 2.4. The proposed reaction mechanism involves formation of two sets of Tiron-pyrophosphato-manganese(III) mixed-ligand intermediates, bonded via a catecholato or via a sulfonato group, respectively. They decompose to the quinone or the Mn(IV)/Mn(II) product in a rate-determining electron transfer or disproportionation. Remarkably, disproportionation is also first-order in both reactants, which implies a novel type of catalysis by Tirion, due to the greater substitutional lability of sulfonato vs. catecholato bonded Tiron.
机译:在pH值区间为1-6的条件下,采用停流技术研究了三(焦磷酸)锰(III)在水溶液中氧化4,5-二羟基-1,3-苯二磺酸(Tiron)的动力学。 2-70毫秒范围内的快速扫描紫外可见分光光度法显示出两个平行的反应,即氧化为邻醌和歧化成锰(II)和可溶性锰(IV)。在研究的整个pH范围内,氧化还原反应在Mn〜(III)和Tiron中均表现出一级动力学。二级速率常数显示出明显的pH依赖性,在pH = 2.4时最大值。拟议的反应机制涉及形成两组分别通过邻苯二酚或磺基键合的钛铁-焦磷酸-锰(III)混合配体中间体。它们以决定电子转移或歧化速率的速率分解为醌或Mn(IV)/ Mn(II)产物。值得注意的是,这两种反应物的歧化作用也是一阶的,这意味着由于硫磺酸根对邻苯二酚键合的Tiron具有更大的取代稳定性,这意味着Tirion可以进行新型催化。

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