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具有特定相互作用的聚(氧化乙烯)/离子液体混合物的异常相分离和流变行为。

Unusual phase separation and rheological behavior of poly(ethylene oxide)/ionic liquid mixtures with specific interactions.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering of China, Sichuan University, Chengdu 610065, China.

出版信息

Soft Matter. 2016 Sep 28;12(36):7613-23. doi: 10.1039/c6sm01220e. Epub 2016 Aug 22.

Abstract

The phase separation behavior of poly(ethylene oxide) (PEO) in ionic liquid 1-ethyl-3-methylimidazolium tetrafluoroborate ([EMIM][BF4]) was investigated by rheological, optical microscopy, FT-IR and DSC measurements. It is demonstrated that specific interactions, particularly the hydrogen bonding between PEO and the ionic liquids as evidenced by FT-IR, in which a subtle but apparent absorption peak shift near the phase transition appears, account for the unusual low critical solution temperature (LCST) phase separation. Unlike the typical trend in which the storage modulus G' simply increases with temperature near the phase boundary for polymer blends without specific interaction, in our study, a novel "V-shaped" rheological response is observed, namely a dip in G' followed by an upturn, especially at low PEO concentration (<50 wt%). The magnitude of the "V" dip has heating rate and frequency dependences, while Tr (the phase transition temperature) is almost unchanged with heating rate and frequency. Upon increasing the alkyl chain length on the imidazolium ring from an ethyl to a butyl, the "V-shape" becomes more prominent and shifts to higher temperature, which is consistent with the results of FT-IR and DSC, evidently due to the stronger hydrogen bonding interaction between PEO and [BMIM][BF4] than [EMIM][BF4]. This unusual "V" dip might be tentatively ascribed to the coupling effects of the breaking of the "hydrogen bonding cage" formed between PEO chains and IL molecules and dissolution of the heterogeneous clusters as verified by FT-IR and TEM, respectively, and the following upturn is dominated by the interface formation upon phase separation.

摘要

聚环氧乙烷(PEO)在离子液体 1-乙基-3-甲基咪唑四氟硼酸盐([EMIM][BF4])中的相分离行为通过流变学、光学显微镜、FT-IR 和 DSC 测量进行了研究。结果表明,特殊相互作用,特别是 PEO 和离子液体之间的氢键,如 FT-IR 所示,其中在相变附近出现微妙但明显的吸收峰位移,是异常低临界溶液温度(LCST)相分离的原因。与没有特殊相互作用的聚合物共混物在相边界附近,储能模量 G'随温度简单增加的典型趋势不同,在我们的研究中,观察到一种新颖的“V 形”流变响应,即 G'的下降 followed by 上升,特别是在 PEO 浓度较低(<50wt%)时。“V”形下降的幅度与升温速率和频率有关,而 Tr(相变温度)几乎不受升温速率和频率的影响。当咪唑环上的烷基链长度从乙基增加到丁基时,“V 形”变得更加明显,并向更高的温度移动,这与 FT-IR 和 DSC 的结果一致,显然是由于 PEO 和 [BMIM][BF4] 之间的氢键相互作用比 [EMIM][BF4] 更强。这种不寻常的“V”形下降可能归因于 PEO 链和 IL 分子之间形成的“氢键笼”的破坏以及异质团簇的溶解之间的耦合效应,分别通过 FT-IR 和 TEM 验证,随后的上升由相分离时界面形成主导。

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