Posada E, López-Salas N, Jiménez Riobóo R J, Ferrer M L, Gutiérrez M C, Del Monte F
Instituto de Ciencia de Materiales de Madrid-ICMM, Consejo Superior de Investigaciones Científicas-CSIC, Campus de Cantoblanco, 28049-Madrid, Spain.
Phys Chem Chem Phys. 2017 Jul 14;19(26):17103-17110. doi: 10.1039/c7cp02180a. Epub 2017 Jun 21.
Deep eutectic solvents (DESs) offer a suitable alternative to conventional solvents in terms of both performance and cost-effectiveness. Some DESs also offer certain green features, the greenness of which is notoriously enhanced when combined with water. Aqueous DES dilutions are therefore attracting great attention as a novel green medium for biotechnological processes, with the aqueous dilutions of reline - a DES composed of urea and choline chloride - being one of the most studied systems. Despite their macroscopic homogeneous appearance, both H NMR spectroscopic studies and molecular dynamics simulations have revealed the occurrence of certain dynamic heterogeneity at a microscopic molecular level. Ultrasonic measurements were also used with the aim of getting further insights but nonconclusive results were obtained. Herein, we have studied aqueous reline dilutions by Brillouin spectroscopy given its proved suitability for detecting local structure rearrangements in liquid mixtures of H-bonded co-solvents. Brillouin spectroscopy revealed the formation of a co-continuous structure resulting from local structure rearrangements and micro-segregation into aqueous and DES phases. Interestingly, there is agreement between H NMR and Brillouin spectroscopy when pointing to the DES content where microphase segregation and formation of co-continuous structures occurred.
在性能和成本效益方面,深共熔溶剂(DESs)是传统溶剂的合适替代品。一些DESs还具有某些绿色特性,当与水混合时,其绿色特性会显著增强。因此,DES水稀释液作为一种用于生物技术过程的新型绿色介质备受关注,其中reline(一种由尿素和氯化胆碱组成的DES)的水稀释液是研究最多的体系之一。尽管它们在宏观上呈现均匀外观,但1H NMR光谱研究和分子动力学模拟都揭示了在微观分子水平上存在一定的动态不均匀性。人们还使用超声测量来进一步深入了解,但结果并不确定。在此,我们通过布里渊光谱研究了reline水稀释液,因为它已被证明适用于检测氢键共溶剂液体混合物中的局部结构重排。布里渊光谱揭示了由局部结构重排和微相分离成水相和DES相导致的共连续结构的形成。有趣的是,在指出发生微相分离和共连续结构形成的DES含量时,1H NMR和布里渊光谱之间存在一致性。