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首页> 外文期刊>New Journal of Chemistry >Design of well balanced hydrophilic-lipophilic catalytic surfaces for the direct and selective monoesterification of various polyols
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Design of well balanced hydrophilic-lipophilic catalytic surfaces for the direct and selective monoesterification of various polyols

机译:平衡良好的亲水-亲脂性催化表面的设计,用于各种多元醇的直接和选择性单酯化

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The transesterification process is a well known reaction of organic chemistry. However, the monoesterification of unprotected polyols such as glycerol or sucrose is much more complex and the design of selective catalysts is becoming a huge challenge in order to avoid many protection and deprotection steps, harmful for the cost and the environmental impact of the resulting process. In this study, we showed that the control of the hydrophilic - lipophilic balance of heterogeneous catalysts is a crucial key in order to tune both the catalyst activity and the monoester selectivity. Indeed, whereas homogeneous guanidine led to low selectivity toward monoesters, its anchorage on a hydrophilic solid support such as silica allowed us to prepare two basic hybrid organic - inorganic materials able to selectively afford monoesters in high yield and in an environmentally-friendly process, at low temperature and starting from an equimolecular mixture of unprotected polyols and various fatty methyl esters.
机译:酯交换过程是有机化学的众所周知的反应。然而,未保护的多元醇例如甘油或蔗糖的单酯化要复杂得多,并且选择性催化剂的设计正成为巨大的挑战,以避免避免许多保护和脱保护步骤,这对所得方法的成本和环境影响是有害的。在这项研究中,我们表明,控制非均相催化剂的亲水-亲脂平衡是调节催化剂活性和单酯选择性的关键。确实,尽管均相胍导致对单酯的选择性低,但其锚固在亲水性固体载体(如二氧化硅)上却使我们能够制备出两种基本的有机-无机杂化材料,它们能够以高收率和环境友好的方法选择性地提供单酯。低温,起始于未保护的多元醇和各种脂肪甲酯的等分子混合物。

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