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Task-Specific Organic Salts and Ionic Liquids Binary Mixtures: A Combination to Obtain 5-Hydroxymethylfurfural From Carbohydrates

机译:特定于任务的有机盐和离子液体二元混合物:从碳水化合物中获得5-羟甲基糠醛的组合

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摘要

The increase in energy demand and depletion of fossil fuels are among major issues of modern society. Valorization and transformation of raw materials in products of industrial value represent a challenge. This justifies the growing interest of scientific research toward the identification of suitable media and methodologies able to pursue above goals, paying attention to matter of sustainability. On this subject, we studied sulfonic-acid functionalized diimidazolium salts as catalysts for the conversion of fructose and sucrose to 5-hydroxymethylfurfural (5-HMF) in an ionic liquid mixture. In general, using these salts allowed us to obtain 5-HMF in good yields from both substrates in mild conditions. Indeed, at 60°C and in the presence of 20 mol% of catalyst, 5-HMF yields of 60 and 30% were obtained from fructose and sucrose, respectively. The catalytic system was recycled and used up to six times observing no appreciable loss in yield for the first four cycles. Moreover, we gathered mechanistic information by in situ 1H NMR monitoring the dehydration of fructose. To dissect the role of acidity on the reaction, we determined the Hammett acidity function of each salt. Comparison of these results with yields and reactivity observed in the presence of related monocationic salts and with a dicationic salt bearing only one sulfonic acid group, allowed stating that the reactivity observed is the result of the combined action of acidity and structural features of the catalysts. Overall, the approach proposed here could contribute to pave the way to increase sustainability in the raw material valorization processes.
机译:能源需求的增加和化石燃料的枯竭是现代社会的主要问题。具有工业价值的产品中原材料的价值评估和转换是一个挑战。这证明了科学研究对识别能够实现上述目标的合适媒体和方法学的兴趣日益浓厚,同时关注可持续性问题。在这个问题上,我们研究了磺酸官能化的二咪唑鎓盐作为离子液体混合物中果糖和蔗糖向5-羟甲基糠醛(5-HMF)转化的催化剂。通常,使用这些盐可以使我们在温和条件下从两种底物获得高收率的5-HMF。实际上,在60℃和20mol%的催化剂存在下,分别从果糖和蔗糖获得5-HMF的产率分别为60%和30%。循环使用催化系统,使用了六次,观察到前四个循环中收率没有明显下降。此外,我们通过原位 1 1H NMR监测了果糖的脱水情况,收集了机械信息。为了剖析酸度在反应中的作用,我们确定了每种盐的哈米特酸度函数。将这些结果与在相关的单阳离子盐的存在下观察到的收率和反应性以及仅带有一个磺酸基的二元盐进行比较,可以说明观察到的反应性是酸度和催化剂结构特征共同作用的结果。总体而言,此处提出的方法可能有助于为增加原材料评估过程中的可持续性铺平道路。

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