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通过含 V 的全硅 ZSM-22 沸石引发的非自由基机制,可将芳烃即时羟化为酚类。

Immediate hydroxylation of arenes to phenols via V-containing all-silica ZSM-22 zeolite triggered non-radical mechanism.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University (former Nanjing University of Technology), Nanjing, 210009, P.R. China.

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.

出版信息

Nat Commun. 2018 Jul 26;9(1):2931. doi: 10.1038/s41467-018-05351-w.

Abstract

Hydroxylation of arenes via activation of aromatic C-H bond has attracted great attention for decades but remains a huge challenge. Herein, we achieve the ring hydroxylation of various arenes with stoichiometric hydrogen peroxide (HO) into the corresponding phenols on a robust heterogeneous catalyst series of V-Si-ZSM-22 (TON type vanadium silicalite zeolites) that is straightforward synthesized from an unusual ionic liquid involved dry-gel-conversion route. For benzene hydroxylation, the phenol yield is 30.8% (selectivity >99%). Ring hydroxylation of mono-/di-alkylbenzenes and halogenated aromatic hydrocarbons cause the yields up to 26.2% and selectivities above 90%. The reaction is completed within 30 s, the fastest occasion so far, resulting in ultra-high turnover frequencies (TOFs). Systematic characterization including V NMR and X-ray absorption fine structure (XAFS) analyses suggest that such high activity associates with the unique non-radical hydroxylation mechanism arising from the in situ created diperoxo V(IV) state.

摘要

几十年来,芳烃的 C-H 键活化羟基化一直受到极大关注,但仍是一个巨大的挑战。在此,我们通过一种从涉及非常规离子液体的干凝胶转化途径直接合成的、坚固的多相催化剂系列 V-Si-ZSM-22(TON 型钒硅沸石),以化学计量的过氧化氢(HO)实现了各种芳烃的环羟基化,得到相应的酚。对于苯的羟基化,苯酚的收率为 30.8%(选择性>99%)。单-和二-烷基苯以及卤代芳烃的环羟基化导致产率高达 26.2%,选择性高于 90%。反应在 30 秒内完成,是迄今为止最快的一次,得到超高的周转频率(TOFs)。包括 V NMR 和 X 射线吸收精细结构(XAFS)分析在内的系统表征表明,这种高活性与独特的非自由基羟基化机制有关,该机制源于原位生成的双过氧钒(IV)态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4d8/6062531/629760a65bdd/41467_2018_5351_Fig1_HTML.jpg

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