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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Molecular Evolution of Poly(2-isopropyl-2-oxazoline) Aqueous Solution during the Liquid-Liquid Phase Separation and Phase Transition Process
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Molecular Evolution of Poly(2-isopropyl-2-oxazoline) Aqueous Solution during the Liquid-Liquid Phase Separation and Phase Transition Process

机译:聚(2-异丙基-2-恶唑啉)水溶液在液相分离和相变过程中的分子演化

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摘要

A detailed phase transition process of poly(2-isopropyl-2-oxazoline) (PIPOZ) in aqueous solution was investigated by means of DSC, temperature-variable H-1 NMR, Raman, optical micrographs, and FT-IR spectroscopy measurements. Gradual phase separation accompanied by large dehydration degree and big conformational changes above the lower critical solution temperature (LCST) and facile reversibility were identified. Based on the two-dimensional correlation (2Dcos) and perturbation correlation moving window (PCMW) analyses, the sequence order of chemical group motions in phase transition process was elucidated. Additionally, a newly assigned CH3 center dot center dot center dot O=C intermolecular hydrogen bond at 3008 cm(-1) in the PIPOZ system provides extra information on the interactions between C-H and C=O groups. The formation of cross-linking "bridging" hydrogen bonds C=O center dot center dot center dot D-O-D center dot center dot center dot O=C (1631 cm(-1)) is proposed as the key process to induce the liquid-liquid phase separation and polymer-rich phase formation of PIPOZ solution. With slow heating, more and more "bridging" hydrogen bonds were formed and D2O were expelled with an ordered and mostly all-trans conformation adopted in the PIPOZ chains. On the basis of these observations, a physical picture on the molecular evolution of PIPOZ solution during the phase transition process has been derived.
机译:通过DSC,温度可变的H-1 NMR,拉曼光谱,光学显微照片和FT-IR光谱测量研究了聚(2-异丙基-2-恶唑啉)(PIPOZ)在水溶液中的详细相变过程。在较低的临界溶液温度(LCST)以上,伴随着较大的脱水度和较大的构象变化以及容易的可逆性,进行了逐步相分离。基于二维相关性(2Dcos)和摄动相关性移动窗口(PCMW)分析,阐明了相变过程中化学基团运动的顺序。此外,在PIPOZ系统中新分配的CH3中心点中心点中心点O = C在3008 cm(-1)的分子间氢键提供了有关C-H和C = O基团之间相互作用的额外信息。提出交联“桥联”氢键C = O中心点中心点中心点DOD中心点中心点中心点O = C(1631 cm(-1))作为诱导液-液的关键过程PIPOZ溶液的相分离和富聚合物相形成。在缓慢加热的情况下,越来越多的“桥连”氢键形成,D2O以PIPOZ链中采用的有序且大部分为全反式构象的方式排出。基于这些观察,得出了相变过程中PIPOZ溶液分子演化的物理图景。

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