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富电子铁(III)卟啉配合物与过氧化氢实现烯烃催化环氧化的首次成功:咪唑在非质子溶剂中对铁卟啉配合物活化过氧化氢的影响

First success of catalytic epoxidation of olefins by an electron-rich iron(III) porphyrin complex and H2O2: imidazole effect on the activation of H2O2 by iron porphyrin complexes in aprotic solvent.

作者信息

Nam W, Lee H J, Oh S Y, Kim C, Jang H G

机构信息

Department of Chemistry, Ewha Womans University, Seoul, South Korea.

出版信息

J Inorg Biochem. 2000 Jul 1;80(3-4):219-25. doi: 10.1016/s0162-0134(00)00085-4.

Abstract

An electron-rich iron(III) porphyrin complex (meso-tetramesitylporphinato)iron(III) chloride [Fe(TMP)Cl], was found to catalyze the epoxidation of olefins by aqueous 30% H2O2 when the reaction was carried out in the presence of 5-chloro-1-methylimidazole (5-Cl-1-Melm) in aprotic solvent. Epoxides were the predominant products with trace amounts of allylic oxidation products, indicating that Fenton-type oxidation reactions were not involved in the olefin epoxidation reactions. cis-Stilbene was stereospecifically oxidized to cis-stilbene oxide without giving isomerized trans-stilbene oxide product, demonstrating that neither hydroperoxy radical (HOO*) nor oxoiron(IV) porphyrin [(TMP)FeIV=O] was responsible for the olefin epoxidations. We also found that the reactivities of other iron(III) porphyrin complexes such as (meso-tetrakis(2,6-dichlorophenyl)porphinato)iron(III) chloride [Fe(TDCPP)Cl], (meso-tetrakis(2,6-difluorophenyl)porphinato)iron(III) chloride [Fe(TDFPP)Cl], and (meso-tetrakis(pentafluorophenyl)porphinato)iron(III) chloride [Fe(TPFPP)CI] were significantly affected by the presence of the imidazole in the epoxidation of olefins by H2O2. These iron porphyrin complexes did not yield cyclohexene oxide in the epoxidation of cyclohexene by H2O2 in the absence of 5-Cl-1-MeIm in aprotic solvent; however, addition of 5-Cl-1-MeIm to the reaction solutions gave high yields of cyclohexene oxide with the formation of trace amounts of allylic oxidation products. We proposed, on the basis of the results of mechanistic studies, that the role of the imidazole is to decelerate the O-O bond cleavage of an iron(III) hydroperoxide porphyrin (or H2O2-iron(II) porphyrin adduct) and that the intermediate transfers its oxygen to olefins prior to the O-O bond cleavage.

摘要

当反应在非质子溶剂中5-氯-1-甲基咪唑(5-Cl-1-Melm)存在的情况下进行时,发现富电子的铁(III)卟啉配合物(中-四(均三甲苯基)卟啉铁(III)氯化物[Fe(TMP)Cl])能催化30%的过氧化氢水溶液对烯烃进行环氧化反应。环氧化物是主要产物,只有痕量的烯丙基氧化产物,这表明烯烃环氧化反应不涉及芬顿型氧化反应。顺式二苯乙烯被立体选择性地氧化为顺式氧化二苯乙烯,没有生成异构化的反式氧化二苯乙烯产物,这表明氢过氧自由基(HOO*)和氧代铁(IV)卟啉[(TMP)FeIV=O]都不是烯烃环氧化反应的原因。我们还发现,其他铁(III)卟啉配合物,如中-四(2,6-二氯苯基)卟啉铁(III)氯化物[Fe(TDCPP)Cl]、中-四(2,6-二氟苯基)卟啉铁(III)氯化物[Fe(TDFPP)Cl]和中-四(五氟苯基)卟啉铁(III)氯化物[Fe(TPFPP)Cl]在过氧化氢对烯烃进行环氧化反应时,咪唑的存在对它们的反应活性有显著影响。在非质子溶剂中,当没有5-Cl-1-MeIm时,这些铁卟啉配合物在过氧化氢对环己烯进行环氧化反应时不会生成环氧环己烷;然而,向反应溶液中加入5-Cl-1-MeIm会得到高产率的环氧环己烷,并生成痕量的烯丙基氧化产物。基于机理研究的结果,我们提出,咪唑的作用是减缓铁(III)氢过氧卟啉(或过氧化氢-铁(II)卟啉加合物)的O-O键断裂,并且该中间体在O-O键断裂之前将其氧转移给烯烃。

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