首页> 美国卫生研究院文献>Molecules >Optimization of Cyclohexanol and Cyclohexanone Yield in the Photocatalytic Oxofunctionalization of Cyclohexane over Degussa P-25 under Visible Light
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Optimization of Cyclohexanol and Cyclohexanone Yield in the Photocatalytic Oxofunctionalization of Cyclohexane over Degussa P-25 under Visible Light

机译:可见光下Degussa P-25在环己烷光催化氧化官能化中环己醇和环己酮收率的优化

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摘要

The sustainable transformation of basic chemicals into organic compounds of industrial interest using mild oxidation processes has proved to be challenging. The production of cyclohexanol and cyclohexanone from cyclohexane is of interest to the nylon manufacturing industry. However, the industrial oxidation of cyclohexane is inefficient. Heterogeneous photocatalysis represents an alternative way to synthesize these products, but the optimization of this process is difficult. In this work, the yields of photocatalytic cyclohexane conversion using Degussa P-25 under visible light were optimized. To improve cyclohexanol production, acetonitrile was used as an inert photocatalytic solvent. Experiments showed that the use of the optimized conditions under solar light radiation did not affect the cyclohexanol/cyclohexanone ratio. In addition, the main radical intermediary produced in the reaction was detected by the electronic paramagnetic resonance technique.
机译:事实证明,采用温和的氧化工艺将基本化学物质可持续地转化为具有工业价值的有机化合物具有挑战性。由环己烷生产环己醇和环己酮是尼龙制造业感兴趣的。但是,环己烷的工业氧化效率低下。非均相光催化代表了合成这些产物的另一种方法,但是这一过程的优化是困难的。在这项工作中,使用Degussa P-25在可见光下优化了光催化环己烷的转化率。为了改善环己醇的生产,乙腈用作惰性光催化溶剂。实验表明,在太阳光辐射下使用优化条件不会影响环己醇/环己酮的比例。另外,通过电子顺磁共振技术检测了反应中产生的主要自由基中间体。

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