Photochemical and Photophysical Dynamics of the Aqueous Ferrate(VI) Ion

化学 水溶液 光化学 离子 动力学(音乐) 荧光 有机化学 声学 量子力学 物理
作者
Cali Antolini,Charles D. Spellman,Christopher Otolski,Gilles Doumy,Anne Marie March,Donald A. Walko,Cunming Liu,Xiaoyi Zhang,Benjamin Young,Joseph E. Goodwill,Dugan Hayes
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:144 (49): 22514-22527 被引量:11
标识
DOI:10.1021/jacs.2c08048
摘要

Ferrate(VI) has the potential to play a key role in future water supplies. Its salts have been suggested as "green" alternatives to current advanced oxidation and disinfection methods in water treatment, especially when combined with ultraviolet light to stimulate generation of highly oxidizing Fe(V) and Fe(IV) species. However, the nature of these intermediates, the mechanisms by which they form, and their roles in downstream oxidation reactions remain unclear. Here, we use a combination of optical and X-ray transient absorption spectroscopies to study the formation, interconversion, and relaxation of several excited-state and metastable high-valent iron species following excitation of aqueous potassium ferrate(VI) by ultraviolet and visible light. Branching from the initially populated ligand-to-metal charge transfer state into independent photophysical and photochemical pathways occurs within tens of picoseconds, with the quantum yield for the generation of reactive Fe(V) species determined by relative rates of the competing intersystem crossing and reverse electron transfer processes. Relaxation of the metal-centered states then occurs within 4 ns, while the formation of metastable Fe(V) species occurs in several steps with time constants of 250 ps and 300 ns. Results here improve the mechanistic understanding of the formation and fate of Fe(V) and Fe(IV), which will accelerate the development of novel advanced oxidation processes for water treatment applications.

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