Zhao Yong-Hong, Zhu Bao-Ku, Kong Li, Xu You-Yi
Institute of Polymer Science, Key Laboratory of Macromolecule Synthesis and Functionalization (Ministry of Education), Zhejiang University, Hangzhou 310027, People's Republic of China.
Langmuir. 2007 May 8;23(10):5779-86. doi: 10.1021/la070139o. Epub 2007 Apr 5.
To endow hydrophobic poly(vinylidene fluoride) (PVDF) membranes with reliable hydrophilicity and protein resistance, an amphiphilic hyperbranched-star polymer (HPE-g-MPEG) with about 12 hydrophilic arms in each molecule was synthesized by grafting methoxy poly(ethylene glycol) (MPEG) to the hyperbranched polyester (HPE) molecule using terephthaloyl chloride (TPC) as the coupling agent and blended with PVDF to fabricate porous membranes via phase inversion process. The chemical composition changes of the membrane surface were confirmed by X-ray photoelectron spectroscopy (XPS), and the membrane morphologies were measured by scanning electron microscopy (SEM). Water contact angle, static protein adsorption, and filtration experiments were used to evaluate the hydrophilicity and anti-fouling properties of the membranes. It was found that MPEG segments of HPE-g-MPEG enriched at the membrane surface substantially, while the water contact angle decreased as low as 49 degrees for the membrane with a HPE-g-MPEG/PVDF ratio of 3/10. More importantly, the water contact angle of the blend membrane changed little after being leached continuously in water at 60 degrees C for 30 days, indicating a quite stable presence of HPE-g-MPEG in the blend membranes. Furthermore, the blend membranes showed lower static protein adsorption, higher water and protein solution fluxes, and better water flux recovery after cleaning than the pure PVDF membrane.
为了赋予疏水性聚偏氟乙烯(PVDF)膜可靠的亲水性和抗蛋白性能,以对苯二甲酰氯(TPC)为偶联剂,将甲氧基聚乙二醇(MPEG)接枝到超支化聚酯(HPE)分子上,合成了一种每个分子中约有12个亲水臂的两亲性超支化星形聚合物(HPE-g-MPEG),并与PVDF共混,通过相转化过程制备多孔膜。通过X射线光电子能谱(XPS)确认膜表面的化学成分变化,用扫描电子显微镜(SEM)测量膜的形态。通过水接触角、静态蛋白质吸附和过滤实验来评估膜的亲水性和抗污染性能。结果发现,HPE-g-MPEG的MPEG链段大量富集在膜表面,当HPE-g-MPEG/PVDF比例为3/10时,膜的水接触角降至低至49度。更重要的是,共混膜在60℃水中连续浸泡30天后,水接触角变化很小,表明HPE-g-MPEG在共混膜中存在相当稳定。此外,与纯PVDF膜相比,共混膜表现出更低的静态蛋白质吸附、更高的水通量和蛋白质溶液通量,以及清洗后更好的水通量恢复率。