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Direct Catalytic Route to Biomass-Derived 25-FurandicarboxylicAcid and Its Use as Monomer in a Multicomponent Polymerization

机译:生物质衍生的25-呋喃二甲酸的直接催化路线酸及其作为单体在多组分聚合中的应用

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摘要

Efficient synthesis of valuable platform chemicals from renewable feedstock is a challenging, yet essential strategy for developing technologies that are both economical and sustainable. In the present study, we investigated the synthesis of 2,5-furandicarboxylic acid (FDCA) in a two-step catalytic process starting from sucrose as largely available biomass feedstock. In the first step, 5-(hydroxymethyl)furfural (HMF) was synthesized by hydrolysis and dehydration of sucrose using sulfuric acid in a continuous reactor in 34% yield. In a second step, the resulting reaction solution was directly oxidized to FDCA without further purification over a Au/ZrO2 catalyst with 84% yield (87% selectivity, batch process), corresponding to 29% overall yield with respect to sucrose. This two-step process could afford the production of pure FDCA after the respective extraction/crystallization despite the impure intermediate HMF solution. To demonstrate the direct application of the biomass-derived FDCA as monomer, the isolated product was used for Ugi-multicomponent polymerizations, establishing a new applicationpossibility for FDCA. In the future, this efficient two-step processstrategy toward FDCA should be extended to further renewable feedstock.
机译:从可再生原料有效合成有价值的平台化学品是一项具有挑战性但必不可少的战略,对于开发既经济又可持续的技术而言。在本研究中,我们从蔗糖作为可大量利用的生物质原料开始的两步催化过程中研究了2,5-呋喃二甲酸(FDCA)的合成。在第一步中,通过在连续反应器中使用硫酸对蔗糖进行水解和脱水来合成5-(羟甲基)糠醛(HMF),产率为34%。在第二步骤中,将所得反应溶液不经Au / ZrO 2催化剂直接纯化而直接氧化成FDCA,产率为84%(选择性为87%,间歇法),相当于蔗糖总产率为29%。尽管中间体HMF溶液不纯,但该两步过程仍可在各自的萃取/结晶后提供纯的FDCA生成。为了证明生物质衍生的FDCA作为单体的直接应用,分离出的产物用于Ugi多组分聚合,建立了新的应用FDCA的可能性。将来,这一高效的两步过程FDCA的策略应扩展到进一步的可再生原料。

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