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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Outer-sphere electron transfer kinetics of metal ion oxidation by molecular oxygen
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Outer-sphere electron transfer kinetics of metal ion oxidation by molecular oxygen

机译:分子氧氧化金属离子的外层电子转移动力学

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Density functional theory molecular orbital calculations and Marcus theory have been combined to assess the rates and physicochemical factors controlling the outer-sphere oxidation of divalent V, Cr, Mn, Fe, and Co aquo and hydroxo ions by O-2 in homogeneous aqueous solution. Key quantities in the elementary oxidation step include the inner-sphere component of the reorganization energy, the thermodynamic driving force, and electrostatic work terms describing the interactions occurring, in this case, between the net charges on the product species. Collectively, these factors and their interplay have a large influence on the rate of the oxidation cross-reaction. An-inner-sphere pathway for the self-exchange reactions and oxidation by O-2 of Mn2+ and Cr2+ ions has been supported indirectly in this study by comparing predicted outer-sphere rates with the results of previous experiments. Likewise, an outer-sphere pathway is suggested for the similar sets of reactions involving the V, Fe, and Co ions. An assessment of the self-exchange reaction for the oxygen/superoxide couple has led to predicted rates in excellent agreement with direct measurements. Predicted rates of oxidation for the hexaquo Fe ion are also in agreement with experiment, while the predicted rates for the outer-sphere oxidation of its hydrolysis products are similar to2 to 3 (monohydroxo) and similar to4 (dihydroxo) orders of magnitude slower than the observed rates. This suggests an inner-sphere pathway is appropriate to explain the relatively fast rates observed for the hydrolyzed Fe species. Copyright (C) 2002 Elsevier Science Ltd. [References: 79]
机译:结合密度泛函理论,分子轨道计算和Marcus理论,评估了在均质水溶液中控制O-2对二价V,Cr,Mn,Fe和Co水和氢氧根离子的外层氧化的速率和理化因素。基本氧化步骤中的关键量包括重组能量的内球成分,热力学驱动力和静电功,这些静电功描述了在这种情况下产品种类上净电荷之间发生的相互作用。这些因素及其相互作用共同影响了氧化交叉反应的速率。通过比较预测的外球速率与先前的实验结果,间接支持了球内自交换反应和Mn2 +和Cr2 +离子的O-2氧化的内球途径。同样,对于涉及V,Fe和Co离子的类似反应,建议使用外球途径。对氧/超氧化物对的自交换反应的评估已导致预测速率与直接测量极为吻合。六价铁离子的预测氧化速率也与实验一致,而其水解产物的外层氧化的预测速率则比二价铁慢约2至3个(单羟基)和约4个(二氢氧)。观察率。这表明内球途径是适当的解释水解的铁物种观察到的相对快的速率。版权所有(C)2002 Elsevier Science Ltd. [参考:79]

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