首页> 外文期刊>Journal of Organometallic Chemistry >Oxidations by the system 'hydrogen peroxide-[Mn2L2O3][PF6](2) (L=1,4,7-trimethyl-1,4,7-triazacyclononane)-oxalic acid'. Part 6. Oxidation of methane and other alkanes and olefins in water
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Oxidations by the system 'hydrogen peroxide-[Mn2L2O3][PF6](2) (L=1,4,7-trimethyl-1,4,7-triazacyclononane)-oxalic acid'. Part 6. Oxidation of methane and other alkanes and olefins in water

机译:通过“过氧化氢-[Mn2L2O3] [PF6](2)(L = 1,4,7-三甲基-1,4,7-三氮杂环壬烷)-草酸的氧化”。第6部分。水中甲烷和其他烷烃和烯烃的氧化

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摘要

Oxidation of alkanes with hydrogen peroxide in water solution at 10-50 degrees C is efficiently catalyzed by the cationic dinuclear manganese (IV) derivative [Mn2L2O3](2+) (1, with L = 1,4,7-trimethyl-1,4,7-triazacyclonoiiane, TMTACN) in the form of the hexafluorophosphate salt ([1][PF6](2)) if oxalic acid is present as a co-catalyst. Methane gives methanol and formaldehyde (turnover numbers, TONs, were 7 and 2, respectively, after reduction of the reaction mixture with ascorbic acid) whereas cyclohexane was oxidized with TONs up to 160 affording cyclohexyl hydroperoxide, cyclohexanone and cyclohexanol (the ketone was the main product, although at room temperature almost pure alkyl hydroperoxide was formed). In contrast to the oxidation in acetonitrile, the reaction with linear n-alkanes in water exhibits an unusual distribution of oxygenates. For example, in the oxidation of n-heptane the normalized reactivity of the methylene group in position 4 of the chain is 3-7 times higher than that of the CH, group in position 2. Dec-1-ene is epoxidized by hydrogen peroxide in water (a biphasic system) catalyzed by [1][PF6](2) and oxalic acid in the presence of a small amount of acetonitrile with TONs up to 1000 (no epoxidation has been detected in the absence of MeCN). (c) 2005 Elsevier B.V. All rights reserved.
机译:阳离子双核锰(IV)衍生物[Mn2L2O3](2+)(1,L = 1,4,7-三甲基-1,1)可以有效地催化在10-50摄氏度下水溶液中过氧化氢对烷烃的氧化。如果草酸作为助催化剂存在,则为六氟磷酸盐([1] [PF6](2))形式的4,7-三氮杂环烷烷(TMTACN)。甲烷制得甲醇和甲醛(反应混合物用抗坏血酸还原后的总吨数分别为7和2),而环己烷被TONs氧化至160,得到环己基氢过氧化物,环己酮和环己醇(酮是主要的产物,尽管在室温下几乎形成纯净的烷基氢过氧化物。与乙腈中的氧化相反,在水中与直链正构烷烃的反应表现出不同寻常的含氧化合物分布。例如,在正庚烷的氧化中,链4位的亚甲基的归一化反应活性比2位CH的基团高3-7倍。Dec-1-ene被过氧化氢环氧化在少量乙腈和TONs高达1000的乙腈存在下,由[1] [PF6](2)和草酸催化在水中(双相体系)催化(在没有MeCN的情况下未检测到环氧化)。 (c)2005 Elsevier B.V.保留所有权利。

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