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首页> 外文期刊>Green chemistry >Aerobic oxidative coupling of alcohols and amines over Au-Pd/resin in water: Au/Pd molar ratios switch the reaction pathways to amides or imines
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Aerobic oxidative coupling of alcohols and amines over Au-Pd/resin in water: Au/Pd molar ratios switch the reaction pathways to amides or imines

机译:水中Au-Pd /树脂上的醇和胺的需氧氧化偶联:Au / Pd摩尔比将反应途径切换为酰胺或亚胺

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摘要

A facile switch of the reaction pathways of aerobic oxidative coupling of alcohols and amines from amidation to imination was realized for the first time by tuning the Au/Pd ratios in ion-exchange resin supported Au-Pd alloy catalysts (Au-Pd/resin). Amides were obtained with high yields on Au6Pd/resin while imines were obtained over AuPd4/resin. Various alcohols and amines underwent oxidative coupling smoothly in water to afford the desired products with good to excellent yields. Further investigation on the reaction mechanism suggested the synergistic effect between Au and Pd determined the adsorption strength of the aldehyde intermediate, which in turn dictated the reaction pathways. That is, on Au-rich alloys (e.g., Au6Pd) absorbed aldehyde species was formed, followed by further oxidation to yield amides, while on Pd-rich alloys (e.g., AuPd4). free aldehyde was generated, which then underwent condensation with amines to produce imines. The discovery might provide avenues to develop hew efficient catalysts for the green synthesis of special chemicals.
机译:通过调节离子交换树脂负载的Au-Pd合金催化剂(Au-Pd /树脂)中的Au / Pd比,首次实现了醇和胺的好氧氧化偶联反应从酰胺化到胺化的反应路径的便捷转换。 。在Au6Pd /树脂上可以高收率获得酰胺,而在AuPd4 /树脂上可以得到亚胺。各种醇和胺在水中均能顺利进行氧化偶联,从而以高至优异的收率得到所需的产物。对反应机理的进一步研究表明,金和钯之间的协同作用决定了醛中间体的吸附强度,进而决定了反应途径。即,在富含Au的合金(例如Au6Pd)上形成吸收的醛物质,随后进一步氧化以产生酰胺,而在富含Pd的合金上(例如AuPd4)。生成游离醛,然后与胺缩合生成亚胺。该发现可能为开发用于绿色合成特殊化学品的高效催化剂提供了途径。

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