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Mechanochemical synthesis of graphene oxide-supported transition metal catalysts for the oxidation of isoeugenol to vanillin

机译:氧化石墨烯负载的过渡金属催化剂的机械化学合成用于将异丁香酚氧化为香兰素

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摘要

Vanillin is one of the most commonly used natural products, which can also be produced from lignin-derived feedstocks. The chemical synthesis of vanillin is well-established in large-scale production from petrochemical-based starting materials. To overcome this problem, lignin-derived monomers (such as eugenol, isoeugenol, ferulic acid etc.) have been effectively used in the past few years. However, selective and efficient production of vanillin from these feedstocks still remains an issue to replace the existing process. In this work, new transition metal-based catalysts were proposed to investigate their efficiency in vanillin production. Reduced graphene oxide supported Fe and Co catalysts showed high conversion of isoeugenol under mild reaction conditions using H2O2 as oxidizing agent. Fe catalysts were more selective as compared to Co catalysts, providing a 63% vanillin selectivity at 61% conversion in 2 h. The mechanochemical process was demonstrated as an effective approach to prepare supported metal catalysts that exhibited high activity for the production of vanillin from isoeugenol.
机译:香兰素是最常用的天然产物之一,也可以由木质素衍生的原料生产。香兰素的化学合成在基于石油化学的起始原料的大规模生产中已被广泛确立。为了克服这个问题,木质素衍生的单体(例如丁子香酚,异丁香酚,阿魏酸等)在过去几年中已经被有效地使用。然而,从这些原料中选择性和有效地生产香兰素仍然是取代现有工艺的问题。在这项工作中,提出了新的基于过渡金属的催化剂,以研究其在香兰素生产中的效率。还原的氧化石墨烯负载的Fe和Co催化剂在温和的反应条件下,使用H2O2作为氧化剂,显示出异丁香酚的高转化率。与Co催化剂相比,Fe催化剂具有更高的选择性,在2小时内转化率为61%时,香兰素的选择性为63%。机械化学过程被证明是一种制备负载型金属催化剂的有效方法,该催化剂对从异丁香酚生产香兰素具有很高的活性。

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