Suppr超能文献

迈向更绿色的世界——机械化学法对环糊精的衍生化。

Toward a Greener World-Cyclodextrin Derivatization by Mechanochemistry.

机构信息

Department of Drug Science and Technology, University of Turin, Via P. Giuria 9, 10125 Turin, Italy.

出版信息

Molecules. 2021 Aug 27;26(17):5193. doi: 10.3390/molecules26175193.

Abstract

Cyclodextrin (CD) derivatives are a challenge, mainly due to solubility problems. In many cases, the synthesis of CD derivatives requires high-boiling solvents, whereas the product isolation from the aqueous methods often requires energy-intensive processes. Complex formation faces similar challenges in that it involves interacting materials with conflicting properties. However, many authors also refer to the formation of non-covalent bonds, such as the formation of inclusion complexes or metal-organic networks, as reactions or synthesis, which makes it difficult to classify the technical papers. In many cases, the solubility of both the starting material and the product in the same solvent differs significantly. The sweetest point of mechanochemistry is the reduced demand or complete elimination of solvents from the synthesis. The lack of solvents can make syntheses more economical and greener. The limited molecular movements in solid-state allow the preparation of CD derivatives, which are difficult to produce under solvent reaction conditions. A mechanochemical reaction generally has a higher reagent utilization rate. When the reaction yields a good guest co-product, solvent-free conditions can be slower than in solution conditions. Regioselective syntheses of per-6-amino and alkylthio-CD derivatives or insoluble cyclodextrin polymers and nanosponges are good examples of what a greener technology can offer through solvent-free reaction conditions. In the case of thiolated CD derivatives, the absence of solvents results in significant suppression of the thiol group oxidation, too. The insoluble polymer synthesis is also more efficient when using the same molar ratio of the reagents as the solution reaction. Solid reactants not only reduce the chance of hydrolysis of multifunctional reactants or side reactions, but the spatial proximity of macrocycles also reduces the length of the spacing formed by the crosslinker. The structure of insoluble polymers of the mechanochemical reactions generally is more compact, with fewer and shorter hydrophilic arms than the products of the solution reactions.

摘要

环糊精(CD)衍生物是一个挑战,主要是由于其溶解度问题。在许多情况下,CD 衍生物的合成需要使用高沸点溶剂,而从水相中分离产物通常需要能源密集型的过程。配合物的形成也面临着类似的挑战,因为它涉及到具有相互冲突性质的相互作用材料。然而,许多作者也将非共价键的形成,如包合物或金属有机网络的形成,称为反应或合成,这使得很难对技术论文进行分类。在许多情况下,起始材料和产物在同一溶剂中的溶解度差异很大。机械化学的最大优点是减少或完全消除合成过程中的溶剂。溶剂的缺乏可以使合成更经济、更环保。固态中分子运动的限制允许制备 CD 衍生物,这些衍生物在溶剂反应条件下很难制备。机械化学反应通常具有更高的试剂利用率。当反应产生良好的客体副产物时,无溶剂条件可能比溶液条件下的反应速度更慢。无溶剂反应条件下可以实现对 -6- 氨基和烷基硫代 -CD 衍生物或不溶性环糊精聚合物和纳米海绵的区域选择性合成,这是绿色技术可以提供的一个很好的例子。在硫代 CD 衍生物的情况下,不存在溶剂会导致硫醇基团的氧化受到显著抑制。当使用与溶液反应相同摩尔比的试剂时,不溶性聚合物的合成效率也更高。固态反应物不仅减少了多官能反应物或副反应的水解机会,而且大环的空间接近性还减少了由交联剂形成的间隔的长度。机械化学反应不溶性聚合物的结构通常更紧凑,与溶液反应产物相比,具有更少和更短的亲水性臂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9793/8433980/ad4d58a5a576/molecules-26-05193-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验