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Metal chlorides-catalyzed selective oxidation of cyclohexane by molecular oxygen under visible light irradiation

机译:可见光照射下金属氯化物催化分子氧选择性氧化环己烷

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The development of mild and efficient process for the selective oxidation of organic compounds with molecular oxygen can be one of the key technologies for synthesizing oxygenates. Here, a visible light-driven metal chloride to catalyze the selective oxidation of cyclohexane was carried out at ambient temperature under a pure O _2 atmosphere. Among the metal salts examined, only a few metal chlorides, with easily changeable valence, such as CuCl _2·2H _2O, VOCl _3, and FeCl 3·6H _2O, were found to be active to this photo-oxidation reaction in acetonitrile or acetone, providing cyclohexanol, cyclohexanone, chlorocyclohexane, and cyclohexene as main products. This is likely because the weak coordination of these metal chlorides with solvent molecules plays key roles in absorbing visible light and realizing photoredox cycle, as supported by UV-Vis spectrum and cyclic voltammetry measurements. Among these active metal chlorides, CuCl _2·2H _2O showed a higher conversion and better selectivity for cyclohexanol and cyclohexanone (the oxygenated products) than the other two metal chlorides, and its activity and selectivity for chlorocyclohexane were significantly improved in the case of adding concentrated HCl, because HCl promotes the photocatalytic cycling, as supported by UV-Vis spectra. Notably, a high turnover frequency (TOF, 7.4 h ~(-1)) and an excellent selectivity for the oxygenated products (93%) were achieved upon a low concentration of CuCl _2·2H _2O (0.002 mol L ~(-1)), 0.1 ml of concentrated HCl and 2 atm of O _2 pressure. Based on these findings, a free radical mechanism for the present photocatalysis system was proposed.
机译:发展温和有效的分子氧选择性氧化有机化合物的方法可能是合成含氧化合物的关键技术之一。在此,在环境温度下在纯O _2气氛下进行可见光驱动的金属氯化物以催化环己烷的选择性氧化。在所检查的金属盐中,仅发现了几价易变的金属氯化物,例如CuCl _2·2H _2O,VOCl _3和FeCl 3·6H _2O,对在乙腈或丙酮中的这种光氧化反应有活性。提供主要产品环己醇,环己酮,氯环己烷和环己烯。这可能是因为这些金属氯化物与溶剂分子的弱配位在吸收可见光和实现光氧化还原循环中起着关键作用,这得到了UV-Vis光谱和循环伏安法测量的支持。在这些活性金属氯化物中,CuCl _2·2H _2O与其他两种金属氯化物相比,具有更高的转化率和对环己醇和环己酮(含氧产物)的选择性,并且在添加浓金属的情况下,其对氯代环己烷的活性和选择性也得到了显着提高。 HCl,因为HCl促进了UV-Vis光谱的光催化循环。值得注意的是,在低浓度的CuCl _2·2H _2O(0.002 mol L〜(-1)的条件下,可以获得较高的周转频率(TOF,7.4 h〜(-1))和对氧化产物的优异选择性(93%)。 ),0.1毫升浓盐酸和2个大气压的O _2压力。基于这些发现,提出了用于本光催化系统的自由基机理。

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