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首页> 外文期刊>Applied Organometallic Chemistry >Multilayer-Functionalized Reduced Graphene Oxide Decorated with Gold Nanoparticles as a Designed Nanonanocatalyst for the Selective Oxidation of Cyclohexene by Molecular Oxygen in a Solvent-Free System
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Multilayer-Functionalized Reduced Graphene Oxide Decorated with Gold Nanoparticles as a Designed Nanonanocatalyst for the Selective Oxidation of Cyclohexene by Molecular Oxygen in a Solvent-Free System

机译:用金纳米颗粒装饰的多层官能化的石墨烯氧化物作为设计的纳米催化剂,用于通过无溶剂系统中的分子氧选择环己烯的选择性氧化

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摘要

The aerobic oxidation of cyclohexene is of great significance from the viewpoints of both fundamental and industry studies as it can transfer the petrochemical feedstock into valuable chemicals. In this research, gold nanoparticles were synthesized on the multi-layer functionalized reduced graphene oxide. The surface of reduced graphene oxide (rGO) was modified with hydrophobic and hydrophilic layers to create the rGO with scattered hydrophilic positions. The gold nanoparticles were synthesized and immobilized simultaneously in small hydrophilic micro reactors in a mild condition. Characterization of synthesized nanocatalyst was confirmed with different techniques such as TEM, XRD, FT-IR, and SEM. TEM images of synthesized catalyst show the gold nanoparticles have diameters less than 5 nm. Designed nanonanocatalyst was investigated for the selective liquid phase oxidation of cyclohexene with molecular oxygen in solvent free condition which after optimized conditions a maximum of 88% conversion and 91% selectivity was obtained.
机译:从基础和行业研究的观点来看,环己烯的有氧氧化具有重要意义,因为它可以将石化原料转移成有价值的化学品。在该研究中,在多层官能化的石墨烯氧化物上合成了金纳米颗粒。用疏水性和亲水层改性还原石墨烯氧化物(RGO)的表面,以产生具有散射亲水性位置的RGO。将金纳米颗粒在温和条件下在小亲水微反应器中同时合成并固定。用不同的技术(如TEM,XRD,FT-IR和SEM)确认合成纳米催化剂的表征。合成催化剂的TEM图像显示金纳米颗粒的直径小于5nm。研究了设计的纳米催化剂,用于在优化条件下的溶剂的自由条件下具有分子氧的环己烯的选择性液相氧化,最大88%转化率和91%的选择性。

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