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球磨法合成随机取代的阴离子环糊精

Synthesis of Randomly Substituted Anionic Cyclodextrins in Ball Milling.

作者信息

Jicsinszky László, Caporaso Marina, Calcio Gaudino Emanuela, Giovannoli Cristina, Cravotto Giancarlo

机构信息

Department of Drug Science and Technology, University of Turin, Via P. Giuria 7, 10125 Turin, Italy.

Department of Chemistry, University of Turin, Via P. Giuria 7, 10125 Turin, Italy.

出版信息

Molecules. 2017 Mar 19;22(3):485. doi: 10.3390/molecules22030485.

Abstract

A number of influencing factors mean that the random substitution of cyclodextrins (CD) in solution is difficult to reproduce. Reaction assembly in mechanochemistry reduces the number of these factors. However, lack of water can improve the reaction outcomes by minimizing the reagent's hydrolysis. High-energy ball milling is an efficient, green and simple method for one-step reactions and usually reduces degradation and byproduct formation. Anionic CD derivatives have successfully been synthesized in the solid state, using a planetary ball mill. Comparison with solution reactions, the solvent-free conditions strongly reduced the reagent hydrolysis and resulted in products of higher degree of substitution (DS) with more homogeneous DS distribution. The synthesis of anionic CD derivatives can be effectively performed under mechanochemical activation without significant changes to the substitution pattern but the DS distributions were considerably different from the products of solution syntheses.

摘要

多种影响因素意味着溶液中环糊精(CD)的随机取代难以重现。机械化学中的反应组装减少了这些因素的数量。然而,缺水可以通过将试剂的水解降至最低来改善反应结果。高能球磨是一种用于一步反应的高效、绿色且简单的方法,通常可减少降解和副产物的形成。使用行星式球磨机已成功在固态下合成了阴离子型CD衍生物。与溶液反应相比,无溶剂条件极大地减少了试剂水解,并产生了取代度(DS)更高且DS分布更均匀的产物。阴离子型CD衍生物的合成可以在机械化学活化下有效进行,而取代模式没有显著变化,但DS分布与溶液合成产物有很大不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5db8/6155213/99a780e24422/molecules-22-00485-sch001.jpg

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