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Aqueous biphasic systems composed of ionic liquids and polypropylene glycol: insights into their liquid-liquid demixing mechanisms

机译:由离子液体和聚丙二醇组成的水两相系统:对其液-液分离机理的见解

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摘要

Novel ternary phase diagrams of aqueous biphasic systems (ABSs) composed of polypropylene glycol with an average molecular weight of 400 g mol(-1) (PPG-400) and a vast number of ionic liquids (ILs) were determined. The large array of selected ILs allowed us to evaluate their tuneable structural features, namely the effect of the anion nature, cation core and cation alkyl side chain length on the phase behaviour. Additional evidence on the molecular-level mechanisms which rule the phase splitting was obtained by H-1 NMR (Nuclear Magnetic Resonance) spectroscopy and by COSMO-RS (Conductor-like Screening Model for Real Solvents). Some systems, for which the IL-PPG-400 pairs are completely miscible, revealed to be of type \"0''. All data collected suggest that the formation of PPG-IL-based ABSs is controlled by the interactions established between the IL and PPG, contrarily to previous reports where a \"salting-out'' phenomenon exerted by the IL over the polymer in aqueous media was proposed as the dominant effect in ABS formation. The influence of temperature on the liquid-liquid demixing was also evaluated. In general, an increase in temperature favours the formation of an ABS in agreement with the lower critical solution temperature (LCST) phase behaviour usually observed in polymer-IL binary mixtures. Partition results of a dye (chloroanilic acid, in its neutral form) further confirm the possibility of tailoring the phases' polarities of IL-PPG-based ABSs.
机译:确定了由具有平均分子量400 g mol(-1)的聚丙二醇(PPG-400)和大量离子液体(IL)组成的水性双相系统(ABS)的新型三元相图。大量选择的IL允许我们评估其可调节的结构特征,即阴离子性质,阳离子核心和阳离子烷基侧链长度对相行为的影响。通过H-1 NMR(核磁共振)光谱和COSMO-RS(真实溶剂的类似导体的筛选模型)获得了控制相分离的分子水平机理的其他证据。 IL-PPG-400对完全可混溶的某些系统显示为“ 0”型,所有收集的数据表明,基于PPG-IL的ABS的形成受IL之间建立的相互作用的控制。与PPG相反,与先前的报道相反,在先前的报道中,IL对水性介质中的聚合物施加的“盐析”现象被认为是ABS形成的主要作用。还评估了温度对液-液混合的影响。通常,温度升高有利于形成ABS,这与通常在聚合物-IL二元混合物中观察到的较低的临界溶液温度(LCST)相行为一致。染料(氯胺酸,其中性形式)的分配结果进一步证实了调整基于IL-PPG的ABS的相极性的可能性。

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