首页> 外文期刊>Chemistry: A European journal >Amide-based nonheme cobalt(III) olefin epoxidation catalyst: Partition of multiple active oxidants Co ~V=O, Co ~(IV)=O, and Co ~(III)-OO(O)CR
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Amide-based nonheme cobalt(III) olefin epoxidation catalyst: Partition of multiple active oxidants Co ~V=O, Co ~(IV)=O, and Co ~(III)-OO(O)CR

机译:酰胺基非血红素钴(III)烯烃环氧化催化剂:多种活性氧化剂Co〜V = O,Co〜(IV)= O和Co〜(III)-OO(O)CR的分配

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A mononuclear nonheme cobalt(III) complex of a tetradentate ligand containing two deprotonated amide moieties, [Co(bpc)Cl _2][Et _4N] (1; H _2bpc=4,5-dichloro-1,2-bis(2-pyridine-2- carboxamido)benzene), was prepared and then characterized by elemental analysis, IR, UV/Vis, and EPR spectroscopy, and X-ray crystallography. This nonheme Co ~(III) complex catalyzes olefin epoxidation upon treatment with meta-chloroperbenzoic acid. It is proposed that complex 1 shows partitioning between the heterolytic and homolytic cleavage of an O-O bond to afford Co ~V=O (3) and Co ~(IV)=O (4) intermediates, proposed to be responsible for the stereospecific olefin epoxidation and radical-type oxidations, respectively. Moreover, under extreme conditions, in which the concentration of an active substrate is very high, the Co-OOC(O)R (2) species is a possible reactive species for epoxidation. Furthermore, partitioning between heterolysis and homolysis of the O-O bond of the intermediate 2 might be very sensitive to the nature of the solvent, and the O-O bond of the Co-OOC(O)R species might proceed predominantly by heterolytic cleavage, even in the presence of small amounts of protic solvent, to produce a discrete Co ~V=O intermediate as the dominant reactive species. Evidence for these multiple active oxidants was derived from product analysis, the use of peroxyphenylacetic acid as the peracid, and EPR measurements. The results suggest that a less accessible Co ~V=O moiety can form in a system in which the supporting chelate ligand comprises a mixture of neutral and anionic nitrogen donors.
机译:四齿配体的单核非血红素钴(III)配合物,包含两个去质子化酰胺部分,[Co(bpc)Cl _2] [Et _4N](1; H _2bpc = 4,5-dichloro-1,2-bis(2-制备吡啶-2-羧酰胺基苯),然后通过元素分析,IR,UV / Vis和EPR光谱以及X射线晶体学进行表征。在用间氯过苯甲酸处理后,这种非血红素的Co〜(III)配合物催化烯烃环氧化。有人提出,配合物1在OO键的杂合和均相裂解之间显示出分区,从而提供Co〜V = O(3)和Co〜(IV)= O(4)中间体,被提议负责立体特异性烯烃环氧化和自由基型氧化。此外,在极端条件下,其中活性底物的浓度非常高,Co-OOC(O)R(2)物种可能是环氧化的可能的反应物种。此外,中间体2的OO键的杂化和均相之间的分配可能对溶剂的性质非常敏感,Co-OOC(O)R物种的OO键可能主要通过杂化裂解进行,即使在存在少量质子溶剂,以产生离散的Co〜V = O中间体作为主要的反应性物质。这些多种活性氧化剂的证据来自产品分析,使用过氧苯基乙酸作为过酸以及EPR测量。结果表明,在其中支持的螯合配体包含中性和阴离子氮供体的混合物的系统中可以形成难以接近的Co〜V = O部分。

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