Rubin Pedrazzo Alberto, Caldera Fabrizio, Zanetti Marco, Appleton Silvia Lucia, Dhakar Nilesh Kumar, Trotta Francesco
Dipartimento di Chimica, Università degli Studi di Torino, Via Giuria 7, Torino 10125, Italy.
Beilstein J Org Chem. 2020 Jun 29;16:1554-1563. doi: 10.3762/bjoc.16.127. eCollection 2020.
Cyclodextrin nanosponges (CD-NS) are nanostructured crosslinked polymers made up of cyclodextrins. The reactive hydroxy groups of CDs allow them to act as multifunctional monomers capable of crosslinking to bi- or multifunctional chemicals. The most common NS synthetic pathway consists in dissolving the chosen CD and an appropriate crosslinker in organic polar aprotic liquids (e.g., ,-dimethylformamide or dimethyl sulfoxide), which affect the final result, especially for potential biomedical applications. This article describes a new, green synthetic pathway through mechanochemistry, in particular via ball milling and using 1,1-carbonyldiimidazole as the crosslinker. The polymer obtained exhibited the same characteristics as a CD-based carbonate NS synthesized in a solvent. Moreover, after the synthesis, the polymer was easily functionalized through the reaction of the nucleophilic carboxylic group with three different organic dyes (fluorescein, methyl red, and rhodamine B) and the still reactive imidazoyl carbonyl group of the NS.
环糊精纳米海绵(CD - NS)是由环糊精构成的纳米结构交联聚合物。环糊精的反应性羟基使其能够作为多功能单体,与双官能或多官能化学品发生交联反应。最常见的纳米海绵合成途径是将选定的环糊精和合适的交联剂溶解在有机极性非质子液体(如N,N - 二甲基甲酰胺或二甲基亚砜)中,这会影响最终结果,特别是对于潜在的生物医学应用。本文描述了一种通过机械化学的新型绿色合成途径,特别是通过球磨并使用1,1 - 羰基二咪唑作为交联剂。所得到的聚合物表现出与在溶剂中合成的基于环糊精的碳酸酯纳米海绵相同的特性。此外,合成后,该聚合物通过亲核羧基与三种不同有机染料(荧光素、甲基红和罗丹明B)以及纳米海绵中仍具有反应性的咪唑甲酰羰基的反应,很容易实现功能化。