化学选择性
化学
催化作用
基质(水族馆)
醋酸
配体(生物化学)
烷烃
酒精氧化
小学(天文学)
氢键
乙腈
有机化学
药物化学
分子
物理
地质学
受体
海洋学
生物化学
天文
作者
Valeria Dantignana,Anna Company,Miguel Costas
出处
期刊:Chimia
[Swiss Chemical Society]
日期:2020-06-20
卷期号:74 (6): 470-470
被引量:4
标识
DOI:10.2533/chimia.2020.470
摘要
Catalytic oxidation of primary C–H bonds of alkanes with a series of iron and manganese catalysts is investigated. Products resulting from oxidation of methylenic sites are observed when hexane (S1) is used as model substrate, while corresponding primary C–H bonds remain unreactive. However, by using 2,2,3,3-tetramethylbutane (S2) as model substrate, which only contains primary alkyl C–H bonds, oxidation takes place catalytically using a combination of hydrogen peroxide, a manganese catalyst and acetic acid as co-catalyst, albeit with modest yields (up to 4.4 TON). Complexes bearing tetradentate aminopyridine ligands provide the best yields, while a related pentadentate ligand provides smaller product yields. The chemoselectivity of the reaction is solvent dependent. Carboxylic acid 2b is observed as major product when the reaction takes place in acetonitrile, because of the facile overoxidation of the first formed alcohol product 2a. Instead the corresponding primary alcohol 2a becomes dominant in reactions performed in 2,2,2-trifluoroethanol (TFE). Polarity reversal of the hydroxyl moiety arising from the strong hydrogen bond donor ability of the latter solvent accounts for the unusual product chemoselectivity of the reaction. The significance of the current results in the context of light alkane oxidation is discussed.
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