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首页> 外文期刊>Angewandte Chemie >Highly Efficient Chemical Process To Convert Mucic Acid into Adipic Acid and DFT Studies of the Mechanism of the Rhenium-Catalyzed Deoxydehydration
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Highly Efficient Chemical Process To Convert Mucic Acid into Adipic Acid and DFT Studies of the Mechanism of the Rhenium-Catalyzed Deoxydehydration

机译:高效化学法将M酸转化为己二酸和DFT研究hen催化的脱氧脱水机理

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摘要

The production of bulk chemicals and fuels from renewable bio-based feedstocks is of significant importance for the sustainability of human society. Adipic acid, as one of the most-demanded drop-in chemicals from a bioresource, is used primarily for the large-volume production of nylon-6,6 polyamide. It is highly desirable to develop sustainable and environmentally friendly processes for the production of adipic acid from renewable feedstocks. However, currently there is no suitable bio-adipic acid synthesis process. Demonstrated herein is the highly efficient synthetic protocol for the conversion of mucic acid into adipic acid through the oxorhenium-complex-catalyzed deoxydehydration (DODH) reaction and subsequent Pt/C-catalyzed transfer hydrogenation. Quantitative yields (99 %) were achieved for the conversion of mucic acid into muconic acid and adipic acid either in separate sequences or in a one-step process.
机译:用可再生的生物基原料生产散装化学品和燃料对人类社会的可持续发展具有重要意义。己二酸是生物资源中需求最旺盛的直接化学药品之一,主要用于大批量生产尼龙6,6聚酰胺。迫切需要开发可持续和环境友好的方法,以从可再生原料生产己二酸。但是,目前没有合适的生物己二酸合成方法。本文中展示了一种高效的合成方案,用于通过氧hen络合物催化的脱氧脱水(DODH)反应和随后的Pt / C催化的转移氢化将黏性酸转化为己二酸。以单独的顺序或一步法将粘酸转化为粘康酸和己二酸可实现定量收率(99%)。

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