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在含有机金属铱配合物的分子氧化催化过程中前体的转化。

Precursor transformation during molecular oxidation catalysis with organometallic iridium complexes.

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut 06520, USA

出版信息

J Am Chem Soc. 2013 Jul 24;135(29):10837-51. doi: 10.1021/ja4048762. Epub 2013 Jul 11.

DOI:10.1021/ja4048762
PMID:23822646
Abstract

We present evidence for Cp* being a sacrificial placeholder ligand in the [CpIr(III)(chelate)X] series of homogeneous oxidation catalysts. UV-vis and (1)H NMR profiles as well as MALDI-MS data show a rapid and irreversible loss of the Cp ligand under reaction conditions, which likely proceeds through an intramolecular inner-sphere oxidation pathway reminiscent of the reductive in situ elimination of diolefin placeholder ligands in hydrogenation catalysis by (diene)M(I)(L,L') (M = Rh and Ir) precursors. When oxidatively stable chelate ligands are bound to the iridium in addition to the Cp*, the oxidized precursors yield homogeneous solutions with a characteristic blue color that remain active in both water- and CH-oxidation catalysis without further induction period. Electrophoresis suggests the presence of well-defined Ir-cations, and TEM-EDX, XPS, (17)O NMR, and resonance-Raman spectroscopy data are most consistent with the molecular identity of the blue species to be a bis-μ-oxo di-iridium(IV) coordination compound with two waters and one chelate ligand bound to each metal. DFT calculations give insight into the electronic structure of this catalyst resting state, and time-dependent simulations agree with the assignments of the experimental spectroscopic data. [(cod)Ir(I)(chelate)] precursors bearing the same chelate ligands are shown to be equally effective precatalysts for both water- and CH-oxidations using NaIO4 as chemical oxidant.

摘要

我们提出证据表明,Cp在[CpIr(III)(螯合物)X]系列均相氧化催化剂中是一种牺牲配体占位剂。紫外-可见和(1)H NMR 图谱以及 MALDI-MS 数据表明,Cp配体在反应条件下迅速且不可逆地损失,这可能通过类似于氢化催化中还原原位消除二烯烃占位配体的分子内内球氧化途径进行。(二烯)M(I)(L,L')(M = Rh 和 Ir)前体。当除了 Cp之外,氧化稳定的螯合物配体与铱结合时,氧化前体生成具有特征蓝色的均相溶液,在水和 CH 氧化催化中保持活性,无需进一步诱导期。电泳表明存在明确的 Ir 阳离子,TEM-EDX、XPS、(17)O NMR 和共振拉曼光谱数据最符合蓝色物种的分子身份,为具有两个水分子和一个螯合物配体结合到每个金属的双μ-氧双铱(IV)配位化合物。密度泛函理论计算深入了解了这种催化剂的静止状态的电子结构,并且时变模拟与实验光谱数据的分配一致。使用 NaIO4 作为化学氧化剂,具有相同螯合物配体的[(cod)Ir(I)(螯合物)]前体被证明对水和 CH 氧化均具有同等效力的预催化剂。

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