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原子转移自由基聚合(ATRP)对膜的亲水化/功能化改性包括对膜基体材料的共聚改性和对膜的表面改性.膜基体材料的改性最多见于PVDF为主链的两亲性聚合物.ATRP对膜的表面改性尤其是膜的表面引发方法,可实现将不同功能性单体接枝到聚合物膜表面,得到了抗污染能力强,生物相容性好,开关响应迅速等多种功能性表面层.直接的表面引发改性是一种高效,灵活的表面修饰/功能化方法,也是目前应用最广泛的改性技术.

参考文献

[1] Wang JS;Matyjaszewski K .[J].Journal of the American Chemical Society,1995,117:5614-5615.
[2] Matyjaszewski K;Wang J S .[P].WO Pat:9630421,1996-06-23.
[3] Wang JS.;Matyjaszewski K. .CONTROLLED LIVING RADICAL POLYMERIZATION - HALOGEN ATOM TRANSFER RADICAL POLYMERIZATION PROMOTED BY A CU(I)CU(II) REDOX PROCESS[J].Macromolecules,1995(23):7901-7910.
[4] 华曼,陈明清,刘晓亚,杨成.ATRP法制备两亲性嵌段共聚物的研究[J].高分子学报,2004(05):645-649.
[5] Runge M;Bowden D S;Ned B .[J].Macromolecules,2006,9:498-508.
[6] Urbani W;Monteiro C N;Michael J .[J].Journal of the American Chemical Society,2006,128:11360-11361.
[7] Gao Chao;Qian Hui;Wang Shoubo.[J].Acta Polymerica Sinica,2004(06):84-88.
[8] Patten T;Matyjaszewski K .[J].Advanced Materials,1998,10:901-915.
[9] Jiang Fengjing;Kaltbeitzel A;Meyer W H et al.[J].Macromolecules,2008,41:3081-3085.
[10] 邓慧宇,徐又一,朱宝库,魏秀珍.聚电解质层层自组装制备PV、NF膜研究进展[J].功能材料,2007(08):1217-1220.
[11] 徐丽,许颖,杜春慧,徐又一.聚醚砜微孔膜的疏水改性及其在膜蒸馏中的应用[J].功能材料,2007(04):573-575,579.
[12] 张慧;于海琴 .[J].工业用水与废水,2007,38:97-101.
[13] 苗小郁,李建生,王连军,孙秀云.聚偏氟乙烯膜的亲水化改性研究进展[J].材料导报,2006(03):56-59.
[14] Peinemann K V .[J].Journal of Membrane Science,1992,73:25-35.
[15] 王湛,吕亚文,王淑梅,尹妮,刘淑秀,钱英.PVDF/CA共混超滤膜制备及其特性的研究[J].膜科学与技术,2002(06):4-8.
[16] Ying L.;Wang P.;Kang ET.;Neoh KG. .Synthesis and characterization of poly(acrylic acid)-graft-poly(vinylidene fluoride) copolymers and pH-sensitive membranes[J].Macromolecules,2002(3):673-679.
[17] Hester JF.;Banerjee P.;Won YY.;Akthakul A.;Acar MH.;Mayes AM. .ATRP of amphiphilic graft copolymers based on PVDF and their use as membrane additives[J].Macromolecules,2002(20):7652-7661.
[18] 包艳辉,朱宝库,陈炜,徐又一,徐志康.聚偏氟乙烯微孔膜的亲水化改性及功能化研究进展[J].功能高分子学报,2003(02):269-274.
[19] Ariya Akthakul;Richard F.Salinaro;Anne M.Mayes .Antifouling Polymer Membranes with Subnanometer Size Selectivity[J].Macromolecules,2004(20):7663-7668.
[20] Asatekin A;Menniti A;Kang ST;Elimelech M;Morgenroth E;Mayes AM .Antifouling nanofiltration membranes for membrane bioreactors from self-assembling graft copolymers[J].Journal of Membrane Science,2006(1/2):81-89.
[21] Chen Yiwang;Liu Dongmei;Deng Qilan et al.[J].Journal of Polymer Science Part A:Polymer Chemistry,2006,44:3434-3443.
[22] Cheng Zhenping;Zhu Xiulin;Kang E T et al.[J].Macromolecules,2006,39:1660-1663.
[23] Singh N;Chen Z;Tomer N;Wickramasinghe SR;Soice N;Husson SM .Modification of regenerated cellulose ultrafiltration membranes by surface-initiated atom transfer radical polymerization[J].Journal of Membrane Science,2008(1/2):225-234.
[24] Xu F J;Zhao J P;Kang E T .[J].Langmuir,2007,23:8585-8592.
[25] Yao Fang;Fua Guodong;Zhao Junpeng et al.[J].Journal of Membrane Science,2008,22(01):140-146.
[26] Friebe A;Ulbricht M .Controlled pore functionalization of poly(ethylene terephthalate) track-etched membranes via surface-initiated atom transfer radical polymerization[J].Langmuir: The ACS Journal of Surfaces and Colloids,2007(20):10316-10322.
[27] Yang Qian;Tian Jing;Xu Zhikang .[J].Langmuir,2007,23:6684-6690.
[28] Chen Yiwang;Deng Qilan;Xiao Jichun et al.[J].Polymer,2007,48:7604-7613.
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