Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, India.
Chem Rec. 2023 Aug;23(8):e202200295. doi: 10.1002/tcr.202200295. Epub 2023 Mar 24.
Bio-compatible ionic liquids (Bio-ILs) represent a class of solvents with peculiar properties and exhibit huge potential for their applications in different fields of chemistry. Ever since they were discovered, researchers have used bio-ILs in diverse fields such as biomass dissolution, CO sequestration, and biodegradation of pesticides. This review highlights the ongoing research studies focused on elucidating the microscopic structure of bio-ILs based on cholinium cation ([Ch] ) and amino acid ([AA] ) anions using the state-of-the-art and classical molecular dynamics (MD) simulations. The microscopic structure associated with these green ILs guides their suitability for specific applications. ILs of this class differ in the side chain of the amino acid anions, and varying the side chain significantly affects the structure of these ILs and thus helps in tuning the efficiency of biomass dissolution. This review demonstrates the central role of the side chain on the morphology of choline amino acid ([Ch][AA]) bio-ILs. The seemingly matured field of bio-ILs and their employment in various applications still holds significant potential, and the insights on their microscopic structure would steer the field of target specific application of these green ILs.
生物相容离子液体(Bio-ILs)是一类具有特殊性质的溶剂,在化学的不同领域具有巨大的应用潜力。自从它们被发现以来,研究人员已经在生物质溶解、CO2 捕集和农药生物降解等不同领域中使用了生物-ILs。本综述重点介绍了使用最先进的和经典的分子动力学(MD)模拟,基于胆碱阳离子([Ch])和氨基酸([AA])阴离子来阐明生物-ILs 微观结构的研究进展。这些绿色 ILs 的微观结构与其特定应用的适用性相关。这类 ILs 在氨基酸阴离子的侧链上有所不同,而侧链的变化会显著影响这些 ILs 的结构,从而有助于调节生物质溶解的效率。本综述展示了侧链在胆碱氨基酸([Ch][AA])生物-IL 形态上的核心作用。尽管生物-ILs 领域似乎已经成熟,并且在各种应用中得到了广泛应用,但对其微观结构的深入了解将指导这些绿色 ILs 针对特定应用的领域。