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使用深共熔溶剂及其水性稀释剂获得的碳和碳复合材料。

Carbon and carbon composites obtained using deep eutectic solvents and aqueous dilutions thereof.

作者信息

Carrasco-Huertas Gaspar, Jiménez-Riobóo Rafael J, Gutiérrez María Concepción, Ferrer María Luisa, Del Monte Francisco

机构信息

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

出版信息

Chem Commun (Camb). 2020 Mar 28;56(25):3592-3604. doi: 10.1039/d0cc00681e. Epub 2020 Mar 12.

DOI:10.1039/d0cc00681e
PMID:32162645
Abstract

The aim of this featured article is to illustrate some of the most recent applications of deep eutectic solvents (DESs) in the synthesis of carbon and carbon composites. DESs can be obtained by the complexation of quaternary ammonium salts with hydrogen-bond donors. DESs have typically been referred to as a related class of ionic liquids because they share many properties. However, DESs present the advantage of easier and low-cost preparation. Moreover, their compositional flexibility can eventually be translated into materials that provide advanced functionalities and/or tailored hierarchical structures. Interestingly, the use of the liquid binary mixtures of DESs and HO for the preparation of carbon materials plays a critical role with regard to the achievement of some particular porous morphologies. Herein, we will also summarize some recent studies performed on DES/HO liquid binary mixtures, revealing the possibility of obtaining new eutectic mixtures upon the simple addition of water to DESs while keeping the DES contents at a certain pseudo-concentrated range. This finding will pave the way to novel applications, especially in those fields in which the preparation of high-tech products via low-cost processes is critical. We hope that this featured article will encourage scientists to explore the promising perspectives offered by DESs and aqueous dilutions thereof.

摘要

这篇专题文章的目的是阐述深共熔溶剂(DESs)在碳及碳复合材料合成中的一些最新应用。DESs可通过季铵盐与氢键供体的络合得到。DESs通常被认为是一类相关的离子液体,因为它们具有许多共同特性。然而,DESs具有制备简便且成本低的优点。此外,它们的成分灵活性最终可转化为具有先进功能和/或定制分级结构的材料。有趣的是,使用DESs与HO的液体二元混合物制备碳材料对于实现某些特定的多孔形态起着关键作用。在此,我们还将总结一些关于DES/HO液体二元混合物的最新研究,揭示在将水简单添加到DESs中同时保持DES含量处于一定的准浓缩范围内时获得新的共熔混合物的可能性。这一发现将为新的应用铺平道路,特别是在那些通过低成本工艺制备高科技产品至关重要的领域。我们希望这篇专题文章能鼓励科学家探索DESs及其水性稀释液所提供的广阔前景。

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