氯化胆碱
深共晶溶剂
共晶体系
乙二醇
材料科学
水溶液
分子动力学
放松(心理学)
化学物理
皮秒
离子液体
纳米技术
化学工程
化学
微观结构
计算化学
物理
有机化学
心理学
社会心理学
工程类
冶金
催化作用
激光器
光学
作者
Stephanie Spittle,Derrick Poe,Brian Doherty,Charles Kolodziej,Luke Heroux,Md. Ashraful Haque,Henry Squire,Tyler Cosby,Yong Zhang,Carla C. Fraenza,Sahana Bhattacharyya,Madhusudan Tyagi,Jing Peng,Ramez A. Elgammal,Thomas A. Zawodzinski,Mark E. Tuckerman,Steve Greenbaum,Burcu Gurkan,Clemens Burda,Mark Dadmun,Edward J. Maginn,Joshua Sangoro
标识
DOI:10.1038/s41467-021-27842-z
摘要
Deep eutectic solvents (DESs) are an emerging class of non-aqueous solvents that are potentially scalable, easy to prepare and functionalize for many applications ranging from biomass processing to energy storage technologies. Predictive understanding of the fundamental correlations between local structure and macroscopic properties is needed to exploit the large design space and tunability of DESs for specific applications. Here, we employ a range of computational and experimental techniques that span length-scales from molecular to macroscopic and timescales from picoseconds to seconds to study the evolution of structure and dynamics in model DESs, namely Glyceline and Ethaline, starting from the parent compounds. We show that systematic addition of choline chloride leads to microscopic heterogeneities that alter the primary structural relaxation in glycerol and ethylene glycol and result in new dynamic modes that are strongly correlated to the macroscopic properties of the DES formed.
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