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Ether- and Alcohol-Functionalized Task-Specific Ionic Liquids: Attractive Properties and Applications

机译:醚和醇官能化任务特异性离子液体:有吸引力的性质和应用

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摘要

In recent years, the designer nature of ionic liquids (ILs) has driven their exploration and exploitation in countless fields among the physical and chemical sciences. A fair measure of the tremendous attention placed on these fluids has been attributed to their inherent designer nature. And yet, there are relatively few examples of reviews which emphasize this vital aspect in an exhaustive or meaningful way. In this critical review, we systematically survey the physicochemical properties of the collective library of ether- and alcohol-functionalized ILs, highlighting the impact of ionic structure on features such as viscosity, phase behavior/transitions, density, thermostability, electrochemical properties, and polarity (e.g., hydrophilicity, hydrogen bonding capability). In the latter portions of this review, we emphasize the attractive applications of these functionalized ILs across a range of disciplines, including their use as electrolytes or functional fluids for electrochemistry, extractions, biphasic systems, gas separations, carbon capture, carbohydrate dissolution (particularly, the (ligno)celluloses), polymer chemistry, antimicrobial and antielectrostatic agents, organic synthesis, biomolecular stabilization and activation, and nanoscience. Finally, this review discusses anion-functionalized ILs, including sulfur- and oxygen-functionalized analogs, as well as choline-based deep eutectic solvents (DESs), an emerging class of fluids which can be sensibly categorized as semi-molecular cousins to the IL. Finally, the toxicity and biodegradability of ether- and alcohol-functionalized ILs are discussed and cautiously evaluated in light of recent reports. By carefully summarizing literature examples on the properties and applications of oxy-functional designer ILs up till now, it is our intent that this review offer a barometer for gauging future advances in the field as well as a trigger to spur further contemplation of these seemingly inexhaustible and—relative to their potential—virtually untouched fluids. It is abundantly clear that these remarkable fluidic materials are here to stay, just as certain design rules are slowly beginning to emerge. However, in fairness, serendipity also still plays an undeniable role, highlighting the need for both expanded in silico studies and a beacon to attract bright, young researchers to the field.
机译:近年来,离子液体(ILS)的设计者性质在物理和化学科学中的无数领域推动了他们的勘探和剥削。对这些液体的巨大关注的公平衡量标准归因于其固有的设计师性质。然而,以令人遗憾或有意义的方式强调这个重要方面的评论的例子相对较少。在这一批判性评论中,我们系统地调查了醚和醇官能化ILS集体文库的物理化学性质,突出了离子结构对粘度,相行为/转变,密度,热稳定性,电化学性质和极性的影响(例如,亲水性,氢键能力)。在本综述的后一部分中,我们强调了这些功能化ILS在一系列学科中的吸引力,包括它们用作电化学,提取,双相系统,气体分离,碳捕获,碳水化合物溶解(特别是)的电解质或功能流体(特别是(木兰)纤维素),聚合物化学,抗微生物和抗电诱导剂,有机合成,生物分子稳定和活化,以及纳米科。最后,讨论了阴离子官能化的ILS,包括硫和氧官能化的类似物,以及基于胆碱的深层共晶溶剂(DESS),其新出现的流体类,可被明智地分类为IL的半分子表兄弟。最后,根据最近的报告讨论醚和醇官能化ILS的毒性和生物降解性和致致致癌性评估。通过仔细概述氧函数设计师ILS的性质和应用的文献示例,直到现在,这篇评论提供了一个气压仪,用于衡量该领域的未来进展以及触发器,以便进一步思考这些看似取之不尽 - 相对于他们几乎不受影响的液体。很明显,这些非凡的流体材料在这里留下来,就像某些设计规则慢慢开始出现一样。然而,公平地,黎明仍然仍然发挥着不可否认的作用,突出了在硅研究中扩大的需求和一个灯塔吸引光明,年轻的研究人员。

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