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铁催化在乙酸存在下的烯烃环氧化反应:对金属基氧化剂性质的见解

Iron-catalyzed olefin epoxidation in the presence of acetic acid: insights into the nature of the metal-based oxidant.

作者信息

Mas-Ballesté Rubén, Que Lawrence

机构信息

Department of Chemistry and Center for Metals in Biocatalysis, University of Minnesota, Minneapolis, Minnesota, 55455, USA.

出版信息

J Am Chem Soc. 2007 Dec 26;129(51):15964-72. doi: 10.1021/ja075115i. Epub 2007 Dec 1.

Abstract

The iron complexes [(BPMEN)Fe(OTf)2] (1) and [(TPA)Fe(OTf)2] (2) [BPMEN = N,N'-bis-(2-pyridylmethyl)-N,N'-dimethyl-1,2-ethylenediamine; TPA = tris-(2-pyridylmethyl)amine] catalyze the oxidation of olefins by H2O2 to yield epoxides and cis-diols. The addition of acetic acid inhibits olefin cis-dihydroxylation and enhances epoxidation for both 1 and 2. Reactions carried out at 0 degrees C with 0.5 mol % catalyst and a 1:1.5 olefin/H2O2 ratio in a 1:2 CH3CN/CH3COOH solvent mixture result in nearly quantitative conversions of cyclooctene to epoxide within 1 min. The nature of the active species formed in the presence of acetic acid has been probed at low temperature. For 2, in the absence of substrate, [(TPA)FeIII(OOH)(CH3COOH)]2+ and [(TPA)FeIVO(NCCH3)]2+ intermediates can be observed. However, neither is the active epoxidizing species. In fact, [(TPA)FeIVO(NCCH3)]2+ is shown to form in competition with substrate oxidation. Consequently, it is proposed that epoxidation is mediated by [(TPA)FeV(O)(OOCCH3)]2+, generated from O-O bond heterolysis of the [(TPA)FeIII(OOH)(CH3COOH)]2+ intermediate, which is promoted by the protonation of the terminal oxygen atom of the hydroperoxide by the coordinated carboxylic acid.

摘要

铁配合物[(BPMEN)Fe(OTf)₂] (1)和[(TPA)Fe(OTf)₂] (2) [BPMEN = N,N'-双(2-吡啶甲基)-N,N'-二甲基-1,2-乙二胺;TPA = 三(2-吡啶甲基)胺]催化H₂O₂氧化烯烃生成环氧化物和顺式二醇。加入乙酸会抑制烯烃的顺式二羟基化,并增强1和2的环氧化反应。在0℃下,使用0.5 mol%的催化剂,在1:2的乙腈/乙酸溶剂混合物中,烯烃与H₂O₂的比例为1:1.5进行反应,环辛烯在1分钟内几乎定量转化为环氧化物。已在低温下探究了乙酸存在时形成的活性物种的性质。对于2,在没有底物的情况下,可以观察到[(TPA)FeIII(OOH)(CH₃COOH)]²⁺和[(TPA)FeIVO(NCCH₃)]²⁺中间体。然而,两者都不是活性环氧化物种。事实上,[(TPA)FeIVO(NCCH₃)]²⁺的形成与底物氧化相互竞争。因此,有人提出环氧化反应是由[(TPA)FeV(O)(OOCCH₃)]²⁺介导的,它是由[(TPA)FeIII(OOH)(CH₃COOH)]²⁺中间体的O - O键异裂产生的,这是由配位羧酸使氢过氧化物末端氧原子质子化所促进的。

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