期刊文献+

聚乳酸/功能化石墨烯纳米复合薄膜的制备与性能 被引量:2

Preparation and Properties of Poly(lactic acid)/Functionalized-Graphene Nanocomposite Films
下载PDF
导出
摘要 以十八烷基胺修饰氧化石墨烯(GO–ODA)为纳米填料,通过溶液铸膜法制备了聚乳酸(PLA)/GO–ODA纳米复合薄膜。用傅立叶变换红外光谱和扫描电子显微镜对GO–ODA及纳米复合薄膜的化学结构及形貌进行了表征,并对纳米复合薄膜的拉伸性能、热稳定性和透氧率进行了测试。结果表明,GO–ODA与PLA具有良好的相容性,可均匀分散于PLA基体中,对PLA膜起到增韧增强的效果,同时GO–ODA的加入使PLA的热稳定性和氧气阻隔性均有所提高。 A series of poly(lactic acid)(PLA) nanocomposite films incorported with octadecylamine-functionalized graphene (GO–ODA) as nanofillers were prepared by solution blending and casting method. The structure and morphology of these nanocomposite films were charaterized by infrared spectroscopy and scanning electron microscope,and tensile properties,thermal stability and oxygen permeability of these films were also tested. The results show that the good compatibility between GO–ODA and PLA,a homogeneous dispersion of GO–ODA in PLA,and hence simultaneous improvement in both strength and toughness of PLA can be achieved. Meanwhile,the incorporation of GO–ODA can also improve the thermal stability and oxygen barrier property of PLA.
出处 《工程塑料应用》 CAS CSCD 北大核心 2016年第6期1-5,共5页 Engineering Plastics Application
基金 国家自然科学基金项目(21374106)
关键词 聚乳酸 功能化石墨烯 纳米复合薄膜 拉伸性能 热稳定性 氧气阻隔性 poly(lactic acid) functionalized-graphene nanocomposite film tensile property thermal stability oxygen barrier property
  • 相关文献

参考文献18

  • 1Athanasiou K A,Niederauer G G,Agrawal C. Sterilization,toxicity,biocompatibility and clinical applications of polylactic acid/polyglycolic acid copolymers[J]. Biomaterials,1996,17(2):93–102.
  • 2Yang F,Murugan R,Wang S,et al. Electrospinning of nano/microscale poly(L-lactic acid) aligned fibers and their potential in neuraltissue engineering[J]. Biomaterials,2005,26(15):2 603–2 610.
  • 3Rhim J W,Hong S I,Ha C S. Tensile,water vapor barrier andantimicrobial properties of PLA/nanoclay composite films[J].LWT–Food Science and Technology,2009,42(2):612–617.
  • 4Jiang L X,Jiang L Y,Xu L J,et al. Effect of a new surfacegraftingmethod for nano-hydroxyapatite on the dispersion and themechanical enhancement for poly(lactide-co-glycolide)[J]. ExpressPolymer Letters,2014,8(2):133–141.
  • 5Kim H S,Chae Y S,Park B H,et al. Thermal and electricalconductivity of poly(l-lactide)/multiwalled carbon nanotubenanocomposites[J]. Current Applied Physics,2008,8(6):803–806.
  • 6Bao C,Song L,Xing W,et al. Preparation of graphene bypressurized oxidation and multiplex reduction and its polymernanocomposites by masterbatch-based melt blending[J]. Journal ofMaterials Chemistry,2012,22(13):6 088–6 096.
  • 7Tong X Z,Song F,Li M Q,et al. Fabrication of graphene/polylactide nanocomposites with improved properties[J]. ComposSci Technol,2013,88:33–38.
  • 8Li X Y,Xiao Y H,Bergeret A,et al. Preparation of polylactide/graphene composites from liquid-phase exfoliated graphite sheets[J].Polym Compos,2014,35:396–403.
  • 9Pinto A M,Cabral J,Tanaka D A P,et al. Effect of incorporationof graphene oxide and graphene nanoplatelets on mechanical andgas permeability properties of poly(lactic acid)films[J]. Polym Int,2013,62:33–40.
  • 10Li W X,Xu Z W,Chen L,et al. A facile method to producegraphene oxide-g-poly(L-lactic acid) as an promisingreinforcement for PLLA nanocomposites[J]. Chem Eng J,2014,237:291–299.

同被引文献18

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部