Li Tianjiao, Tang Hui, Wu Peiyi
State Key Laboratory of Molecular Engineering of Polymers, Collaborative Innovation Center of Polymers and Polymer Composite Materials, Department of Macromolecular Science and laboratory for Advanced Materials, Fudan University, Shanghai 200433, China.
Langmuir. 2015 Jun 23;31(24):6870-8. doi: 10.1021/acs.langmuir.5b01009. Epub 2015 Jun 8.
A detailed phase transition process of poly(2-isopropyl-2-oxazoline) (PIPOZ) in aqueous solution was investigated by means of DSC, temperature-variable (1)H 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···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···D-O-D···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.
通过差示扫描量热法(DSC)、变温(1)H核磁共振、拉曼光谱、光学显微镜和傅里叶变换红外光谱(FT-IR)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。确定了在较低临界溶液温度(LCST)以上伴随着大脱水程度和大构象变化的逐渐相分离以及易逆性。基于二维相关(2Dcos)和扰动相关移动窗口(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3008 cm(-1)处新确定的CH3···O═C分子间氢键提供了关于C-H和C═O基团之间相互作用的额外信息。提出交联“桥连”氢键C═O···D-O-D···O═C(1631 cm(-1))的形成是诱导PIPOZ溶液液-液相分离和富聚合物相形成的关键过程。随着缓慢加热,越来越多的“桥连”氢键形成,D2O被排出,PIPOZ链采用有序且大多为全反式构象。基于这些观察结果,得出了PIPOZ溶液在相变过程中分子演化的物理图像。