Cravotto Giancarlo, Caporaso Marina, Jicsinszky Laszlo, Martina Katia
Dipartimento di Scienza e Tecnologia del Farmaco and NIS - Centre for Nanostructured Interfaces and Surfaces, University of Turin, Via P. Giuria 9, 10125 Turin, Italy.
Beilstein J Org Chem. 2016 Feb 15;12:278-94. doi: 10.3762/bjoc.12.30. eCollection 2016.
The design of efficient synthetic green strategies for the selective modification of cyclodextrins (CDs) is still a challenging task. Outstanding results have been achieved in recent years by means of so-called enabling technologies, such as microwaves, ultrasound and ball mills, that have become irreplaceable tools in the synthesis of CD derivatives. Several examples of sonochemical selective modification of native α-, β- and γ-CDs have been reported including heterogeneous phase Pd- and Cu-catalysed hydrogenations and couplings. Microwave irradiation has emerged as the technique of choice for the production of highly substituted CD derivatives, CD grafted materials and polymers. Mechanochemical methods have successfully furnished greener, solvent-free syntheses and efficient complexation, while flow microreactors may well improve the repeatability and optimization of critical synthetic protocols.
设计用于环糊精(CDs)选择性修饰的高效合成绿色策略仍然是一项具有挑战性的任务。近年来,通过所谓的赋能技术,如微波、超声和球磨机,已经取得了显著成果,这些技术已成为CD衍生物合成中不可替代的工具。已经报道了几个关于天然α-、β-和γ-CD的声化学选择性修饰的例子,包括多相钯和铜催化的氢化和偶联反应。微波辐射已成为生产高取代度CD衍生物、CD接枝材料和聚合物的首选技术。机械化学方法已成功实现了更绿色、无溶剂的合成以及高效络合,而流动微反应器很可能会提高关键合成方案的可重复性和优化程度。