Li Tianjiao, Tang Hui, Wu Peiyi
State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Laboratory of Advanced Materials, Fudan University, Shanghai, 200433, P. R. China.
Soft Matter. 2015 Mar 14;11(10):1911-8. doi: 10.1039/c4sm02812k.
The deswelling and swelling behaviors of poly(2-isopropyl-2-oxazoline)-based hydrogel synthesized by a one-pot microwave-assisted solvent-free reaction were investigated. A distinct hydrophobic collapse of the hydrogel compared with the corresponding aqueous solution was observed by FT-IR spectroscopy combined with two-dimensional correlation spectroscopy (2DCOS) and perturbation-correlation moving-window (PCMW) analyses. The volume phase transition (VPT) temperature of 35 °C during heating and the transition temperature range of 41-30 °C during cooling were determined, indicating different dynamic transition mechanisms during heating and cooling. Water expulsion starting from the benzene ring-centered hydrophobic spots to the surroundings was revealed during deswelling. However, during swelling, although the rebuilding of cross-linking hydrogen bond bridges provided a channel-like microstructure to reswell the hydrogel gradually, a slow, unusual recovery of the amide hydrogen bonds to water molecules was observed.
研究了通过一锅法微波辅助无溶剂反应合成的聚(2-异丙基-2-恶唑啉)基水凝胶的去溶胀和溶胀行为。通过傅里叶变换红外光谱结合二维相关光谱(2DCOS)和扰动相关移动窗口(PCMW)分析,观察到与相应水溶液相比,水凝胶有明显的疏水塌陷。确定了加热过程中35°C的体积相变(VPT)温度和冷却过程中41-30°C的转变温度范围,表明加热和冷却过程中有不同的动态转变机制。在去溶胀过程中,发现水从以苯环为中心的疏水点向周围排出。然而,在溶胀过程中,尽管交联氢键桥的重建提供了一种通道状微观结构,使水凝胶逐渐重新溶胀,但观察到酰胺氢键与水分子的恢复缓慢且异常。