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Multivariate analysis applied to oxidation of cyclohexane and benzyl alcohol promoted by mononuclear iron and copper complexes

机译:单核铁和铜配合物促进环己烷和苄醇的多变量分析

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摘要

Although univariate methodologies facilitate the interpretation of results, they may not correspond to the ideal conditions for a catalytic process. Herein, we examine the catalytic activity of an iron(iii) (1) and a copper(ii) (2) complex under mild conditions in the oxidation of cyclohexane (Cy) and benzyl alcohol (BnOH) with hydrogen peroxide, following a Box-Behnken multivariate experimental design. To the best of our knowledge, this is the first report of the application of this tool to the homogeneous oxidation of these organic substrates. The multivariate approach allowed a range of optimal conditions to be identified for the variables studied. Complex 1 was able to convert higher amounts of the studied substrates into products when compared with 2. However, 2 presented higher selectivity toward the generation of cyclohexanol (CyOH) and benzaldehyde (BA) than 1, although the conversion rates were lower.
机译:尽管单变量方法有助于解释结果,但它们可能与催化过程的理想条件不相对应。 在此,我们在含有过氧化氢的环己烷(Cy)和苄醇(BNOH)氧化的温和条件下,检查铁(III)(1)和铜(II)(2)复合物的催化活性 -behnken多变量实验设计。 据我们所知,这是第一个将该工具应用于这些有机基材的均匀氧化的第一个报告。 多变量方法允许为所研究的变量识别要识别的一系列最佳条件。 与2.相比,复合物1能够将较高量的研究底物转化为产品。然而,2朝着产生环己醇(CyOH)和苯甲醛(Ba)的产生较高的选择性,尽管转化率较低。

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