首页> 美国卫生研究院文献>ACS Omega >Selective Oxidation of Biomass-Derived Alcohols and Aromatic and Aliphatic Alcoholsto Aldehydes with O2/Air Using a RuO2-SupportedMn3O4 Catalyst
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Selective Oxidation of Biomass-Derived Alcohols and Aromatic and Aliphatic Alcoholsto Aldehydes with O2/Air Using a RuO2-SupportedMn3O4 Catalyst

机译:生物质醇与芳香族和脂肪族醇的选择性氧化使用RuO2支持的O2 /空气制备醛类Mn3O4催化剂

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摘要

Selective catalytic oxidation of carbohydrate-derived 5-hydroxymethylfurfural, furfuryl alcohol, and various aromatic and aliphatic compounds to the corresponding aldehyde is a challenging task. The development of a sustainable heterogeneous catalyst is crucial in achieving high selectivity for the desired aldehyde, especially using O2 or air. In this study, a RuO2-supported Mn3O4 catalyst is reported for the selective oxidation reaction. Treatment of MnO2 molecular sieves with RuCl3 in aqueous formaldehyde solution gives a new type of RuO2-supported Mn3O4 catalyst. Detailed catalyst characterization using powder X-ray diffraction, N2 adsorption, scanning and transmission electron microscopes, diffuse reflectance UV–visible spectrometer, and X-ray photoelectron spectroscopy proves that the RuO2 species are dispersed on the highly crystalline Mn3O4 surface. This catalytic conversion process involves molecular oxygen or air (flow, 10 mL/min) as an oxidant. No external oxidizing reagent, additive, or cocatalyst is required to carry out this transformation. This oxidation protocol affords 2,5-diformylfuran, 2-formylfuran, and other aromatic and aliphatic aldehydes in good to excellent yield (70–99%). Moreover, thecatalyst is easily recycled and reused without any loss in the catalyticactivity.
机译:将碳水化合物衍生的5-羟甲基糠醛,糠醇以及各种芳香族和脂肪族化合物选择性催化氧化为相应的醛是一项艰巨的任务。可持续多相催化剂的开发对于实现对所需醛的高选择性至关重要,特别是使用O2或空气。在这项研究中,RuO2负载的Mn3O4催化剂被报道用于选择性氧化反应。在甲醛水溶液中用RuCl3处理MnO2分子筛可得到新型的RuO2负载Mn3O4催化剂。使用粉末X射线衍射,N2吸附,扫描和透射电子显微镜,漫反射紫外可见光谱仪和X射线光电子能谱对催化剂进行了详细的表征,证明RuO2种类分散在高度结晶的Mn3O4表面。该催化转化过程涉及分子氧或空气(流量为10 mL / min)作为氧化剂。不需要外部氧化剂,添加剂或助催化剂来进行该转化。该氧化方案可提供2,5-二甲酰呋喃,2-甲酰呋喃以及其他芳香族和脂肪族醛,产率高至优异(70-99%)。而且,催化剂易于回收利用,不会对催化剂造成任何损失活动。

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