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直接观察液相中自组织含水结构及其对离子液体中 5-(羟甲基)糠醛形成的影响。

Direct Observation of Self-Organized Water-Containing Structures in the Liquid Phase and Their Influence on 5-(Hydroxymethyl)furfural Formation in Ionic Liquids.

机构信息

Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Leninsky Prospect, 47, Moscow, 119991, Russia.

出版信息

Angew Chem Int Ed Engl. 2016 Feb 5;55(6):2161-6. doi: 10.1002/anie.201510090. Epub 2016 Jan 11.

Abstract

Water-containing organic solutions are widespread reaction media in organic synthesis and catalysis. This type of multicomponent liquid system has a number of unique properties because of the tendency for water to self-organize in mixtures with other liquids. The characterization of these water domains is a challenging task because of their soft and dynamic nature. In the present study, the morphology and dynamics of micrometer- and nanometer-scale water-containing compartments in ionic liquids were directly observed by electron microscopy. A variety of morphologies, including isolated droplets, dense structures, aggregates, and 2D meshworks, have been experimentally detected and studied. Using the developed method, the impact of water on the acid-catalyzed biomass conversion reaction was studied at the microscopic level. The process that produced nanostructured domains in solution led to better yields and higher selectivities compared with reactions involving the bulk system.

摘要

含水有机溶液是有机合成和催化中广泛使用的反应介质。由于水在与其他液体混合时具有自组织的趋势,这种多组分液相体系具有许多独特的性质。由于其柔软和动态的性质,这些水域的特性是一项具有挑战性的任务。在本研究中,通过电子显微镜直接观察到离子液体中微米级和纳米级含水隔室的形态和动力学。已经实验检测和研究了多种形态,包括孤立的液滴、密集的结构、聚集体和二维网格。使用所开发的方法,在微观水平上研究了水对酸催化生物质转化反应的影响。与涉及本体体系的反应相比,溶液中产生纳米结构域的过程导致更高的产率和更高的选择性。

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