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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Generation of bis(dithiolene)dioxomolybdenum(vi) complexes from bis(dithiolene)monooxomolybdenum(iv) complexes by proton-coupled electron transfer in aqueous media
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Generation of bis(dithiolene)dioxomolybdenum(vi) complexes from bis(dithiolene)monooxomolybdenum(iv) complexes by proton-coupled electron transfer in aqueous media

机译:在水介质中通过质子偶合电子转移从双(二硫代烯)一氧代钼(iv)配合物生成双(二硫代烯)二氧钼(vi)配合物

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摘要

Electron transfer oxidation reaction of bis(dithiolene) monooxomolybdenum(iv) (Mo~(IV)OL~x) complexes is studied as a model of oxidative-half reaction of arsenite oxidase molybdenum enzymes. The reactions are revealed to involve proton-coupled electron transfer. Electrochemical oxidation of Mo~(IV)OL~x yields the corresponding bis(dithiolene)dioxomolybdenum(vi) complexes in basic solution, where the conversion of Mo~(IV)OL~(dmed) supported by a smaller electron donating dithiolene ligand (1, 2-dicarbomethoxyethylene-1, 2-dithiolate, Ldmed) to Mo~(VI)O_2L~(dmed) is faster than that of Mo~(IV)OL~(bdt) with a larger electron donating dithiolene ligand (1, 2-benzenedithiolate, L~(bdt)) under the same conditions. Titration experiments for the electrochemical oxidation reveal that the reaction involves two-electron oxidation and two equivalents of OH ~- consumption per Mo~(IV)OL~x. In the conversion process of Mo~(IV)OL~x to Mo~(VI)O_2L ~x, the five-coordinate bis(dithiolene)monooxomolybdenum(v) complex (Mo~VOL~x) being a one-electron oxidized species of Mo ~(IV)OL~x is suggested to react with OH~-. Mo ~VOL~x reacts with OH~- in CH_3CN or C_2H_5CN in a 2:2 ratio to give one equivalent Mo ~(IV)OL~x and one equivalent Mo~(VI)O _2L~x, which is confirmed by the UV-vis and IR spectroscopies. The low temperature stopped-flow analysis allows investigations of the mechanism for the reaction of Mo~VOL~x with OH ~-. The kinetic study for the reaction of Mo~VOL ~(dmed) with OH- suggests that Mo~VOL ~(dmed) reacts with OH~- to give a six-coordinate oxo-hydroxo-molybdenum(v) species, Mo~VO(OH), and, then, the resulting species undergoes successive deprotonation by another OH~- and oxidation by a remaining Mo~VOL~(dmed) to yield the final products Mo~(IV)OL~(dmed) and Mo~(VI)O_2L ~(dmed) complexes in a 1:1 ratio. In this case, the Mo~VO _2 species are involved as an intermediate in the reaction. On the other hand, in the reaction of Mo~VOL~(bdt) with OH ~-, coordination of OH~- to the Mo~V centre to give a six-coordinate Mo~VO(OH)L~(bdt) species becomes the rate limiting step and other intermediates are not suggested. On the basis of these results, the ligand effects of the dithiolene ligands on the reactivity of the bis(dithiolene)molybdenum complexes are discussed.
机译:以亚砷酸盐氧化酶钼酶的半氧化反应模型为研究对象,研究了双(二硫代)单氧钼(iv)(Mo〜(IV)OL〜x)配合物的电子转移氧化反应。揭示了这些反应涉及质子偶联的电子转移。 Mo〜(IV)OL〜x的电化学氧化在碱性溶液中产生相应的双(二硫代己烯)二氧钼钼(vi)配合物,其中Mo〜(IV)OL〜(dmed)的转化由较小的供电子的二硫代烯配体( 1,生成Mo〜(VI)O_2L〜(dmed)的2-二苯甲氧基乙烯-1,2-dithiolate,Ldmed比具有给电子二硫代烯配体更大的Mo〜(IV)OL〜(bdt)更快(1,在相同条件下的2-苯二硫代盐,L〜(bdt))。电化学氧化的滴定实验表明,该反应涉及两电子氧化和每当量Mo((IV)OL_x)消耗2当量的OH-。在Mo〜(IV)OL〜x向Mo〜(VI)O_2L〜x的转化过程中,五配位双(二硫代烯)单氧钼(v)配合物(Mo〜VOL〜x)为单电子氧化态建议Mo〜(IV)OL〜x的一部分与OH〜-反应。 Mo〜VOL〜x与CH_3CN或C_2H_5CN中的OH〜-以2:2的比例反应生成一当量的Mo〜(IV)OL〜x和一当量的Mo〜(VI)O _2L〜x紫外可见光谱和红外光谱。低温停止流分析可以研究Mo〜VOL〜x与OH〜-反应的机理。 Mo〜VOL〜(dmed)与OH-反应的动力学研究表明Mo〜VOL〜(dmed)与OH〜-反应生成六配位的氧代-羟基-钼-钼(v) (OH),然后使生成的物质通过另一个OH〜-连续去质子化,并通过剩余的Mo〜VOL〜(dmed)氧化,得到最终产物Mo〜(IV)OL〜(dmed)和Mo〜( VI)O_2L〜(dmed)配合物的比例为1:1。在这种情况下,Mo〜VO _2物种作为反应的中间体。另一方面,在Mo〜VOL〜(bdt)与OH〜-的反应中,OH〜-与Mo〜V中心配位,得到六配位的Mo〜VO(OH)L〜(bdt)物种成为限速步骤,不建议使用其他中间体。基于这些结果,讨论了二硫代烯配体对双(二硫代烯基)钼配合物的反应性的配体作用。

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