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高分子材料表面改性新技术 被引量:1

New Technology of Polymer Materials Surface Modification
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摘要 综述了近年来高分子材料表面改性新技术——等离子体技术表面改性高分子材料的最新进展。运用等离子体技术改变高分子材料的表面性质的方法主要有三类:等离子体处理、等离子体聚合和等离子体接枝聚合。等离子体技术正以其优越性在高聚物材料表面改性方面得到越来越广泛的应用。 Recent progress of new technology of polymer materials surface modification, named plasma technology is reviewed. There are three ways using plasma technology to modify the surface properties of polymer materials, which are plasma surface treatment, plasma polymerization and plasma graft copolymerization. Plasma technology has been applied in polymer material surface modification more and more extensively.
机构地区 西安工程大学
出处 《河南化工》 CAS 2007年第6期3-6,共4页 Henan Chemical Industry
基金 陕西省科技厅科学技术研究发展计划项目(2005KW-21)
关键词 等离子体 表面改性 高分子材料 plasma surface modification polymer materials
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参考文献22

  • 1Guruvenket S,Mohan Rao G,Manoj Komath,et al.Plasma surface modification of polystyrene and polyethylene[J].Applied Surface Science,2004,236:278-284.
  • 2Lai J N,Sunderland B,Xue J M,et al.Study on hydrophilicity of polymer surfaces improved by plasma treatment[J].Applied Surface Science,2006,252:3375-3379.
  • 3刘际伟,高晓敏,冯敏.聚四氟乙烯射频等离子体表面改性研究[J].表面技术,2004,33(1):65-66. 被引量:16
  • 4Li R,Chen J R.Studies on wettability of medical poly(vinyl chloride) by remote argon plasma[J].Applied Surface Science,2006,252:5076-5082.
  • 5任杰,杨爽.生物医用材料——聚乳酸的表面改性研究进展[J].北京生物医学工程,2004,23(4):299-302. 被引量:4
  • 6Sipehia R.The enhanced attachment and growth of endothelial cells on anhydrous ammonia gaseous plasma modified surfaces of polystyrene and poly (tetrafluoroethylene)[J].Biomat.Art.Cells Art.Org.,1990,18(3):437-443.
  • 7Chu C F,Zn A,Liszkowski M,et al.Enhanced growth of animal and human endothelial cells on biodegradable polymers[J].Biochim.Biophys.Acta,1999,1472(3):479-485.
  • 8Hamerli P,Weigel T,Groth T,et al.Surface properties of and cell adhesion onto allylamine-plasma-coated polyethylenterephtalat membranes[J].Biomaterials,2003,24:3989-3999.
  • 9Yi C H,Lee Y H,Yeom G Y.The study of atmospheric pressure plasma for surface cleaning[J].Surface and Coatings Technology,2003,171:237-240.
  • 10肖梅,凌一鸣.低温等离子体在材料表面改性中的应用[J].东南大学学报(自然科学版),2001,31(1):114-118. 被引量:12

二级参考文献64

  • 1张瑞峰,李兴林,胡刚,刘学恕,姚跃广.等离子体改性聚丙烯纤维表面的XPS研究[J].功能高分子学报,1994,7(1):13-17. 被引量:17
  • 2范昌烈,李兵,刘振华,卓仁禧.乳酸-磷酸酯共聚物为载体的高分子药物的合成及其控释研究[J].高等学校化学学报,1996,17(11):1788-1791. 被引量:8
  • 3刘学恕.低温等离子体对聚四氟乙烯表面处理的研究[J].化学和粘合,1985,(2):94-94.
  • 4[1]Kim SW, Jacobs H. Design of nonthrombogenic polymer surfaces for blood-contacting medical devices[J]. Blood Purification,1996,14:357-372.
  • 5[2]Eberhart A, Zhang Z, Guidoin R, et al. A new generation of polyurethane vascular prostheses: Rara Avis or Ignis Fatuas?[J] J Biomed Mater Res (Appl Biomater), 1999,48: 546-558.
  • 6[3]Yang M, Zhang Z, Hahn C, et al. Totally implantable artificial hearts and left ventricular assist devices: Selecting impermeable polycarbonate urethane to manufacture ventricles[J ]. J Biomed Mater Res (Appl Biomater), 1999,48: 13-23.
  • 7[4]Belanger MC, Marois Y, Roy R, et al. Selection of a polyurethane membrane for the manufacture of ventricles for a totally implantable artificial heart: Blood compatibility and biocompatibility studies[ J ]. Artificial Organs, 2000,24 ( 11 ): 879-888.
  • 8[5]Yoneyyama T, Ishihara K, nakabayashi N, et al. Short term in vivo evaluation of small-diameter vascular prostheses composed of segmented poly(etherurethane)/2-methacryloyloxy ethyl phosphorylcholine polymer blend[J]. J Biomed Res(Appl Biomater), 1998,43: 15-20.
  • 9[6]Bae JS, Seo EJ, Kang IK. Synthesis and characterization of heparinized polyurethanes using plasma glow discharge[J]. Biomaterials, 1999,20: 529-537.
  • 10[7]Kim YJ, Kang IK, Huh MW, et al. Surface characterization and in vivo blood compatibility of poly(ethylene terephthalate)immobilized with insulin and/or heparin using plasma glow discharge[J]. Biomaterials,2000,21:121-130.

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