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面向健康产业应用需求的膜技术与膜材料(10)

来源:中华保健医学杂志 【在线投稿】 栏目:期刊导读 时间:2021-05-09
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摘要:[56] Ye P, Sjoberg E, Hedlund J. Air separation at cryogenic temperature using MFI membranes[J]. Microporous and Mesoporous Materials,2014,192:14-17. [57] Chong K, Lai S, Lau W, et al. Fabrication and

[56] Ye P, Sjoberg E, Hedlund J. Air separation at cryogenic temperature using MFI membranes[J]. Microporous and Mesoporous Materials,2014,192:14-17.

[57] Chong K, Lai S, Lau W, et al. Fabrication and characterization of polysulfonemembranes coated with polydimethysiloxane for oxygen enrichment[J].Aerosol and Air Quality Research,2017,17(11):2735-2742.

[58] Chen K, Zhao H, Tan X. Preparation of high-flux PDMS/PSf composite membrane for oxygen enrichment[J]. Membrane Science and Technology,2016,36(3):86-92.

[59] An K, Fan H, Dong Y, et al. Preparation of environment-friendly oxygen-rich silicone rubber membrane[J]. Membrane Science and Technology,2013,33(3):54-58.

[60] 赵长生,赵伟锋,张翔,等.新型血液净化材料及佩戴式人工肾的研究构想和预期成果展望[J].工程科学与技术,2018,50(1):1-8.Zhao C S, Zhao W F, Zhang X, et al. Research framework and anticipated results of novel blood purification materials and wearable artificial kidney[J]. Advanced Engineering Sciences,2018,50(1):1-8.

[61] 郭锐,贾凌云,冯红芹,等.医用血液净化材料的发展现状及研究进展[J].中国血液净化,2004,3(1): R, Jia L Y, Feng H Q, et al. Development and progress of medical blood purification materials[J]. Chinese Journal of Blood Purification,2004,3(1):43-47.

[62] Zailani M Z, Ismail A F, Kadir S, et al. Hemocompatibility evaluation of poly(1,8-octanediol citrate) blend polyethersulfone membranes[J]. Journal of Biomedical Materials Research Part A,2017,105(5):1510-1520.

[63] Irfan M, Idris A. Overview of PES biocompatible/hemodialysis membranes: PES–blood interactions and modification techniques[J].Materials Science and Engineering:C,2015,56:574-592.

[64] Wei X, Li G, Nie J, et al. Preparation and improvement antifouling property and biocompatibility of polyethersulfone membrane by blending comb-like amphiphilic copolymer[J].Journal of Porous Materials,2014,21(5):589-599.

[65] Kaleekkal N J, Thanigaivelan A, Durga M, et al. Graphene oxide nanocomposite incorporated poly(ether imide) mixed matrix membranes forin vitroevaluation of its efficacy in blood purification applications[J]. Industrial & Engineering Chemistry Research,2015,54(32):7899-7913.

[66] Prihandana G S,Ito H,Nishinaka Y,et coated with nanoporousparylene for ultrafiltration[J]. Journal of Microelectromechanical Systems,2012,21(6):1288-1290.

[67] You I, Kang S M, Byun Y, et al. Enhancement of blood compatibility of poly(urethane) substrates by mussel-inspired adhesive heparin coating[J]. Bioconjugate Chemistry, 2011, 22(7):1264-1269.

[68] Ma L, Qin H, Cheng C, et al. Mussel-inspired self-coating at macro-interface with improved biocompatibility and bioactivityviadopamine grafted heparin-like polymers and heparin[J].Journal of Materials Chemistry B,2014,2(4):363-375.

[69] Zhao Y F, Zhang P B, Sun J, et al. Versatile antifouling polyethersulfone filtration membranes modifiedviasurface grafting of zwitterionic polymers from a reactive amphiphilic copolymer additive[J]. Journal of Colloid and Interface Science,2015,448:380-388.

[70] Wang C, Wang Q, Li S S, et al. One-pot synthesis of highly hemocompatible polyurethane/polyethersulfone composite membranes[J].Polymer Bulletin,2017,74(9):3797-3818.

[71] Li S S,Xie Y,Xiang T,et polyethersulfone membranes-hemocompatibility, cytocompatibility, antifouling and antibacterial properties[J].Journal of Membrane Science,2016,498:135-146.

[72] Wang J J, Wu M B, Xiang T, et al. Antifouling and bloodcompatible poly(ether sulfone) membranes modified by zwitterionic copolymersvia in situcrosslinked copolymerization[J].Journal of Applied Polymer Science,2015,132(10):.

[73] Ran F, Song H M, Ma L, et al. Fabrication and cytocompatibility evaluation for blood-compatible polyethersulfone membrane modified by a synthesized poly (vinyl pyrrolidone)-block-poly(acrylate-graft-poly(methyl methacrylate)) -block-poly- (vinyl pyrrolidone)[J]. Polymers for Advanced Technologies, 2016, 27(5):591-596.

[74] Yin Z, Cheng C, Qin H, et al. Hemocompatible polyethersulfone/polyurethane composite membrane for high-performance antifouling and antithrombotic dialyzer[J]. Journal of Biomedical Materials Research Part B-Applied Biomaterials, 2015, 103(1):97-105.

[75] Wang X H, Yan Y N, Lin F, et al. Preparation and characterization of a collagen/chitosan/heparin matrix for an implantable bioartificial liver[J]. Journal of Biomaterials Science-Polymer Edition,2005,16(9):1063-1080.

[76] Wang W. Hemocompatibility and oxygenation performance of polysulfone membranes grafted with polyethylene glycol and heparin by plasma-induced surface modification[J]. Journal of Biomedical Materials Research Part B-Applied Biomaterials,2017,105(7):1737-1746.

[77] Yang Y F, Wan L S, Xu Z K. Surface engineering of microporous polypropylene membrane for antifouling: a mini-review[J]. Journal of Adhesion Science and Technology,2011,25(1/2/3):245-260.

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