- 余英豐 教授
- 復旦大學
- 網址: yuyingfeng.polymer.cn 訪問量:1762811
- 通信地址:上海市淞滬路2005號復旦大學江灣校區化學-高分子樓B5096辦公室
- 郵編:200438
- 電話:021-31242829
- 傳真:021-31242829
- Email:[email protected]
關鍵字:Superhydrophilic surface, polymerization-induced viscoelastic phase separation
論文來源:期刊
具體來源:RSC Adv.2016, 6 (41), 34120-34130
發表時間:2016年
The surface roughness and porosity play important roles on wetting behavior of materials. In this study, we introduced a novel method to tune the wettability of epoxy resin surface. A micro-nanohierarchical structure on polyethylene glycol (PEG) modified epoxy system was fabricated by polymerization-induced viscoelastic phase separation. With manipulating the curing procedure, the concentration and molecular weight of PEG, surfaces with different topography and porosity were obtained. The phase evolution was monitored by time-resolved light scattering (TRLS), and the morphologies of surfaces were demonstrated by scanning electron microscopy (SEM) and atomic force microscopy (AFM). Static water contact angle was also measured by contact angle measurement. With increasing the content of PEG in blends, the effect of viscoelasticity on phase separation was strengthened, which resulted in an increase of porosity and more hydrophilic surface of epoxy resin. Higher molecular weight PEG exerted impact on the viscoelastic behavior of phase separation which rendered rougher epoxy surface. With the aid of higher viscoelasticity on phase separation of PEG modified epoxy system, surface with micro-nano structure exhibited superhydrophilicity