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过硫酸盐猝灭三(联吡啶)钌(II)发光的机制:对光诱导氧化反应的启示。

Mechanism of the quenching of the tris(bipyridine)ruthenium(II) emission by persulfate: implications for photoinduced oxidation reactions.

机构信息

Chemistry Department, Brookhaven National Laboratory , Upton, New York 11973-5000, United States.

出版信息

J Phys Chem A. 2013 Oct 10;117(40):10311-9. doi: 10.1021/jp407573d. Epub 2013 Sep 26.

Abstract

A revised mechanism for the oxidation of the excited state of Ru(bpy)3(2+) with the persulfate anion is described in this work. The formation of the precursor complex in the electron transfer reaction involves ion pairing between the metal complex in ground and excited states and S2O8(2-). The equilibrium constant for the ion-pair formation (K(IP) = 2.7 M(-1)) was determined from electrochemical measurements and analysis of thermal reaction between Ru(bpy)3(2+) and persulfate. It was found to be consistent with the calculated value estimated from the Debye-Hückel model. The analysis of rate constants for reactions between persulfate and various metal complexes indicates that thermal and photochemical reactions most likely proceed through a common pathway. Extremely high reorganization energy (ca. 3.54 eV) for the electron transfer obtained from fitting experimental data with the Marcus equation is indicative of significant nuclear reorganization during the electron transfer step. In view of these results the electron transfer can be described as dissociative probably involving substantial elongation or complete scission of the O-O bond. The proposed model accurately describes experimental results for the quenching of *Ru(bpy)3(2+) over a wide range of persulfate concentrations and resolves some discrepancies between the values of K(IP) and k(et) previously reported. The implications of various factors such as the ionic strength and dielectric constant of the medium are discussed in relation to measurements of the quantum yields in photodriven oxidation reactions employing the Ru(bpy)3(2+)/persulfate couple.

摘要

本工作描述了 Ru(bpy)3(2+)与过硫酸盐阴离子氧化的修订机制。电子转移反应中前体配合物的形成涉及基态和激发态金属配合物与 S2O8(2-)之间的离子对形成。离子对形成的平衡常数 (K(IP) = 2.7 M(-1)) 通过电化学测量和 Ru(bpy)3(2+)与过硫酸盐之间的热反应分析确定。它与从 Debye-Hückel 模型估算的计算值一致。过硫酸盐与各种金属配合物之间反应速率常数的分析表明,热和光化学反应很可能通过共同途径进行。用 Marcus 方程拟合实验数据得到的电子转移极高的重组能(约 3.54 eV)表明电子转移步骤中存在显著的核重组。鉴于这些结果,电子转移可以被描述为离解的,可能涉及 O-O 键的显著伸长或完全断裂。所提出的模型准确地描述了在过硫酸盐浓度范围内广泛的 Ru(bpy)3(2+)猝灭的实验结果,并解决了先前报道的 K(IP)和 k(et)值之间的一些差异。还讨论了各种因素(如介质的离子强度和介电常数)的影响,以与使用 Ru(bpy)3(2+)/过硫酸盐偶联测量光驱动氧化反应的量子产率有关。

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