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聚合反应中的深共熔溶剂:传统合成方法的绿色替代方案

Deep eutectic solvents in polymerizations: a greener alternative to conventional syntheses.

作者信息

del Monte Francisco, Carriazo Daniel, Serrano María C, Gutiérrez María C, Ferrer M Luisa

机构信息

Instituto de Ciencia de Materiales de Madrid (ICMM), Consejo Superior de Investigaciones Científicas (CSIC), Campus de Cantoblanco, 28049 Madrid (Spain).

出版信息

ChemSusChem. 2014 Apr;7(4):999-1009. doi: 10.1002/cssc.201300864. Epub 2013 Dec 27.

Abstract

The use of deep eutectic solvents (DESs) that act as all-in-one solvent-template-reactant systems offers an interesting green alternative to conventional syntheses in materials science. This Review aims to provide a comprehensive overview to emphasize the similarities and discrepancies between DES-assisted and conventional syntheses and rationalize certain green features that are common for the three DES-assisted syntheses described herein: one case of radical polymerization and two cases of polycondensations. For instance, DESs contain the precursor itself and some additional components that either provide certain functionality (e.g., drug delivery and controlled release, or electrical conductivity) to the resulting materials or direct their formation with a particular structure (e.g., hierarchical-type). Moreover, DESs provide a reaction medium, so polymerizations are ultimately carried out in a solventless fashion. This means that DES-assisted syntheses match green chemistry principles 2 and 5 because of the economy of reagents and solvents, whereas the functionality incorporated by the second component allows the need for any post-synthesis derivatization to be minimized or even fully avoided (principle 8). DESs also provide new precursors that favor more efficient polymerization (principle 6) by decreasing the energy input required for reaction progress. Finally, the use of mild reaction conditions in combination with the compositional versatility of DESs, which allows low-toxic components to be selected, is also of interest from the viewpoint of green chemistry because it opens up the way to design biocompatible and/or eco-friendly synthetic methods (principle 3).

摘要

作为一体化溶剂 - 模板 - 反应物体系的深共熔溶剂(DESs)的使用,为材料科学中的传统合成方法提供了一种有趣的绿色替代方案。本综述旨在全面概述,以强调DES辅助合成与传统合成之间的异同,并阐明本文所述的三种DES辅助合成方法共有的某些绿色特征:一种自由基聚合情况和两种缩聚情况。例如,DESs包含前体本身以及一些额外的组分,这些组分要么为所得材料提供某些功能(例如药物递送和控释,或导电性),要么引导其形成特定结构(例如分级结构类型)。此外,DESs提供了反应介质,因此聚合反应最终以无溶剂方式进行。这意味着DES辅助合成符合绿色化学原则2和5,因为试剂和溶剂较为经济,而第二种组分引入的功能可将任何合成后衍生化的需求降至最低甚至完全避免(原则8)。DESs还提供了新的前体,通过降低反应进行所需的能量输入,有利于更高效的聚合反应(原则6)。最后,从绿色化学的角度来看,温和反应条件与DESs组成多样性的结合使用也很有意义,因为DESs允许选择低毒组分,这为设计生物相容性和/或生态友好的合成方法开辟了道路(原则3)。

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