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引入铜作为催化剂进行氧化烷烃脱氢。

Introducing copper as catalyst for oxidative alkane dehydrogenation.

机构信息

Laboratorio de Catálisis Homogénea, Departamento de Química y Ciencia de los Materiales, Unidad Asociada al CSIC, Centro de Investigación en Química Sostenible, Universidad de Huelva, Campus de El Carmen, 21007 Huelva, Spain.

出版信息

J Am Chem Soc. 2013 Mar 13;135(10):3887-96. doi: 10.1021/ja310866k. Epub 2013 Mar 4.

Abstract

The dehydrogenation of n-hexane and cycloalkanes giving n-hexene and cycloalkenes has been observed in the reaction of such hydrocarbons with hydrogen peroxide, in the presence of copper complexes bearing trispyrazolylborate ligands. This catalytic transformation provides the typical oxidation products (alcohol and ketones) with small amounts of the alkenes, a novel feature in this kind of oxidative processes. Experimental data exclude the participation of hydroxyl radicals derived from Fenton-like reaction mechanisms. DFT studies support a copper-oxo active species, which initiates the reaction by H abstraction. Spin crossover from the triplet to the singlet state, which is required to recover the catalyst, yields the major hydroxylation and minor dehydrogenation products. Further calculations suggested that the superoxo and hydroperoxo species are less reactive than the oxo. A complete mechanistic proposal in agreement with all experimental and computational data is proposed.

摘要

在含有三吡唑硼酸盐配体的铜配合物存在下,研究了正己烷和环烷烃与过氧化氢反应时的脱氢反应,生成正己烯和环烯烃。这种催化转化提供了典型的氧化产物(醇和酮),同时还有少量的烯烃,这是此类氧化过程中的一个新特点。实验数据排除了芬顿样反应机制中衍生的羟基自由基的参与。DFT 研究支持了一种铜-氧活性物种,它通过 H 提取引发反应。需要从三重态到单重态的自旋交叉来恢复催化剂,生成主要的羟基化和少量的脱氢产物。进一步的计算表明,超氧和过氧物种的反应活性低于氧物种。提出了一个与所有实验和计算数据一致的完整的机理假设。

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