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水合铁(IV)-氧络合物的电子转移反应活性。外层电子转移与质子耦合电子转移

Electron Transfer Reactivity of the Aqueous Iron(IV)-Oxo Complex. Outer-Sphere vs Proton-Coupled Electron Transfer.

作者信息

Bataineh Hajem, Pestovsky Oleg, Bakac Andreja

机构信息

Ames Laboratory and Chemistry Department, Iowa State University , Ames, Iowa 50011, United States.

出版信息

Inorg Chem. 2016 Jul 5;55(13):6719-24. doi: 10.1021/acs.inorgchem.6b00966. Epub 2016 Jun 18.

Abstract

The kinetics of oxidation of organic and inorganic reductants by aqueous iron(IV) ions, Fe(IV)(H2O)5O(2+) (hereafter Fe(IV)aqO(2+)), are reported. The substrates examined include several water-soluble ferrocenes, hexachloroiridate(III), polypyridyl complexes M(NN)3(2+) (M = Os, Fe and Ru; NN = phenanthroline, bipyridine and derivatives), HABTS(-)/ABTS(2-), phenothiazines, Co(II)(dmgBF2)2, macrocyclic nickel(II) complexes, and aqueous cerium(III). Most of the reductants were oxidized cleanly to the corresponding one-electron oxidation products, with the exception of phenothiazines which produced the corresponding oxides in a single-step reaction, and polypyridyl complexes of Fe(II) and Ru(II) that generated ligand-modified products. Fe(IV)aqO(2+) oxidizes even Ce(III) (E(0) in 1 M HClO4 = 1.7 V) with a rate constant greater than 10(4) M(-1) s(-1). In 0.10 M aqueous HClO4 at 25 °C, the reactions of Os(phen)3(2+) (k = 2.5 × 10(5) M(-1) s(-1)), IrCl6(3-) (1.6 × 10(6)), ABTS(2-) (4.7 × 10(7)), and Fe(cp)(C5H4CH2OH) (6.4 × 10(7)) appear to take place by outer sphere electron transfer (OSET). The rate constants for the oxidation of Os(phen)3(2+) and of ferrocenes remained unchanged in the acidity range 0.05 < [H(+)] < 0.10 M, ruling out prior protonation of Fe(IV)aqO(2+) and further supporting the OSET assignment. A fit to Marcus cross-relation yielded a composite parameter (log k22 + E(0)Fe/0.059) = 17.2 ± 0.8, where k22 and E(0)Fe are the self-exchange rate constant and reduction potential, respectively, for the Fe(IV)aqO(2+)/Fe(III)aqO(+) couple. Comparison with literature work suggests k22 < 10(-5) M(-1) s(-1) and thus E(0)(Fe(IV)aqO(2+)/Fe(III)aqO(+)) > 1.3 V. For proton-coupled electron transfer, the reduction potential is estimated at E(0) (Fe(IV)aqO(2+), H(+)/Fe(III)aqOH(2+)) ≥ 1.95 V.

摘要

报道了水合铁(IV)离子Fe(IV)(H₂O)₅O²⁺(以下简称Fe(IV)aqO²⁺)氧化有机和无机还原剂的动力学。所研究的底物包括几种水溶性二茂铁、六氯铱(III)酸盐、多吡啶配合物M(NN)₃²⁺(M = Os、Fe和Ru;NN = 菲咯啉、联吡啶及其衍生物)、HABTS⁻/ABTS²⁻、吩噻嗪、Co(II)(dmgBF₂)₂、大环镍(II)配合物以及水合铈(III)。大多数还原剂被干净地氧化为相应的单电子氧化产物,但吩噻嗪在一步反应中生成相应的氧化物,以及Fe(II)和Ru(II)的多吡啶配合物生成配体修饰产物除外。Fe(IV)aqO²⁺甚至能氧化Ce(III)(在1 M HClO₄中的E⁰ = 1.7 V),其速率常数大于10⁴ M⁻¹ s⁻¹。在25℃的0.10 M HClO₄水溶液中,Os(phen)₃²⁺(k = 2.5×10⁵ M⁻¹ s⁻¹)、IrCl₆³⁻(1.6×10⁶)、ABTS²⁻(4.7×10⁷)和Fe(cp)(C₅H₄CH₂OH)(6.4×10⁷)的反应似乎通过外层球电子转移(OSET)发生。在0.05 < [H⁺] < 0.10 M的酸度范围内,Os(phen)₃²⁺和二茂铁氧化的速率常数保持不变,排除了Fe(IV)aqO²⁺预先质子化的可能性,并进一步支持了OSET归属。根据Marcus交叉关系拟合得到一个复合参数(log k₂₂ + E⁰Fe/0.059) = 17.2 ± 0.8,其中k₂₂和E⁰Fe分别是Fe(IV)aqO²⁺/Fe(III)aqO⁺电对的自交换速率常数和还原电位。与文献工作的比较表明k₂₂ < 10⁻⁵ M⁻¹ s⁻¹,因此E⁰(Fe(IV)aqO²⁺/Fe(III)aqO⁺) > 1.3 V。对于质子耦合电子转移,估计还原电位为E⁰ (Fe(IV)aqO²⁺, H⁺/Fe(III)aqOH₂⁺) ≥ 1.95 V。

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