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聚乙二醇是一类亲水性长链聚合物.在膜材料表面接枝聚乙二醇,可以有效改善膜的亲水性,提高膜的耐污染性.介绍了聚乙二醇分子结构特征,重点叙述了包括化学法、紫外光照法、等离子体法以及臭氧化法等聚乙二醇在膜表面改性中的接枝方法.膜通过改性,接触角降低,蛋白质吸附显著减少,通量恢复率得到有效改善.

参考文献

[1] 时钧;袁权;高从堦.膜技术手册[M].北京:化学工业出版社,2001:18.
[2] Mulder M;李琳.膜技术基本原理[M].北京:清华大学出版社,1999:4-5.
[3] 任建新.膜分离技术及其应用[M].北京:化学工业出版社,2003:427.
[4] Freger V.;Gilron J.;Belfer S. .TFC polyamide membranes modified by grafting of hydrophilic polymers: an FT-IR/AFM/TEM study[J].Journal of Membrane Science,2002(1):283-292.
[5] Peterson R J .Composite reverse osmosis and nanofiltration membranes[J].Journal of Membrane Science,1993,83:81-150.
[6] Michael A S .Membrane,membrane process and their application:needs,unsolved problems and challenges in the1990's[J].DESALINATION,1990,77:5-34.
[7] 李娜;刘忠洲;续曙光 .耐污染膜--聚乙烯醇膜的研究进展[J].膜科学与技术,1999,19(03):1-7.
[8] Thom VH.;Groth T.;Jankova K.;Jonsson G.;Ulbricht M.;Altankov G. .Optimizing cell-surface interactions by photografting of poly(ethylene glycol)[J].Langmuir: The ACS Journal of Surfaces and Colloids,2000(6):2756-2765.
[9] Kingshott P;Thissen H;Griesser HJ .Effects of cloud-point grafting, chain length, and density of PEG layers on competitive adsorption of ocular proteins.[J].Biomaterials,2002(9):2043-2056.
[10] Kim YH;Han DK;Park KD;Kim SH .Enhanced blood compatibility of polymers grafted by sulfonated PEO via a negative cilia concept.[J].Biomaterials,2003(13):2213-2223.
[11] Kim YW;Shick Ahn W;Kim JJ;Ha Kim Y .In situ fabrication of self-transformable and hydrophilic poly(ethylene glycol) derivative-modified polysulfone membranes.[J].Biomaterials,2005(16):2867-2875.
[12] 严瑞瑄.水溶性高分子[M].北京:化学工业出版社,1998:223.
[13] Bergstrom K;Holmberg K .Reduction of fibrinogen adsorption on PEG-coated polystyrene surfaces[J].Journal of Biomedical Materials Research,1992,26:779-790.
[14] Llanos G R;Seton M V .Review:does polyethylene oxide possess a low thrombogenicty[J].Journal of Biomaterials Science-Polymer Edition,1993,4(04):381-400.
[15] Shoichet M S;Winn S R;Athavale S et al.Poly(ethylene oxide)-Grafted thermoplastic membranes for use as cellular hybrid bio-artificial organs in the central nervous system[J].Biotechnology and Bioengineering,1994,43:563-572.
[16] Fu-Qiang Nie;Zhi-Kang Xu;Qian Yang;Jian Wu;Ling-Shu Wan .Surface modification of poly(acrylonitrile-co-maleic acid) membranes by the immobilization of poly(ethylene glycol)[J].Journal of Membrane Science,2004(1/2):147-155.
[17] Nie FQ.;Xu ZK.;Huang XJ.;Ye P.;Wu J. .Acrylonitrile-based copolymer membranes containing reactive groups: Surface modification by the immobilization of poly(ethylene glycol) for improving antifouling property and biocompatibility[J].Langmuir: The ACS Journal of Surfaces and Colloids,2003(23):9889-9895.
[18] Fu-Qiang Nie;Zhi-Kang Xu;Peng Ye;Jian Wu;Patrick Seta .Acrylonitrile-based copolymer membranes containing reactive groups;effects of surface-immobilized poly(ethylene glycol)s on anti-fouling properties and blood compatibility[J].Polymer: The International Journal for the Science and Technology of Polymers,2004(2):399-407.
[19] Xu ZK;Nie FQ;Qu C;Wan LS;Wu J;Yao K .Tethering poly(ethylene glycol)s to improve the surface biocompatibility of poly(acrylonitrile-co-maleic acid) asymmetric membranes.[J].Biomaterials,2005(6):589-598.
[20] Belfer S.;Fainshtein R.;Radchenko Y.;Kedem O.;Purinson Y. .Surface modification of commercial composite polyamide reverse osmosis membranes[J].Journal of Membrane Science,1998(2):175-181.
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