期刊文献+

PA1010/高岭土杂化材料的制备和探讨 被引量:2

PREPARATION OF HYBRID MATERIALS WITH PA1010 AND BOLUS ALBA AND STUDIES ON THEIR STRUCTURE
下载PDF
导出
摘要 以 PA10 10为基质 ,高岭土为添加剂 ,利用溶液插层法制备了一系列杂化材料。红外分析、X射线衍射、热分析、粒径测定表明 ,合成的杂化材料具有很好的结晶性和耐热性 ,5 %热失重温度均在 35 4℃以上。并且平均粒径分布在 34μm左右。 SEM分析证明杂化材料 PA10 10片层约为 0 . A series of hybrid materials were synthesized by intercalation in solution using PA1010 as matrix, bolus alba as additive. Measurements of FT TR, WAXD, thermal analysis and particle diameter distribution indicate that these hybrid materials have good crystallization and heat resistance. The 5% mass loss temperatures of all materials are higher than 354 ℃. The particle diameter distribution of LG3 is about 34 μm. SEM results show the layer structure of PA1010 is around 0.2 μm.
机构地区 东北大学化学系
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2002年第2期187-191,共5页 Polymer Materials Science & Engineering
基金 国家自然科学基金资助项目 (2 9874 0 0 7)
关键词 PA1010 聚癸二酰癸二胺 高岭土 杂化材料 层间嵌差 制备 PA1010 bolus alba hybrid material intercalation
  • 相关文献

参考文献8

  • 1刘佑习,黄政道,张有勇,李玮.离聚体对PBT/PC共混体系结构与性能的影响[J].高分子材料科学与工程,1998,14(2):67-70. 被引量:12
  • 2刘立敏(LIULi-min) 朱晓光(ZHUXiao-guang) 漆宗能(QIZong-neng).高分子学报,1999,3:274-279.
  • 3王新宇(WANGXin-yu) 漆宗能(QIZong-neng) 王佛松(WANGFu-song).工程塑料应用,1999,27(2).
  • 4Wang M.S.Chem.Mater,1994,6: 468.
  • 5Watkins J J,Mc Carthy TJ.Polym.Mater.Sci.Eng.,1995,73: 158.
  • 6VaiaR A,Vasudevan S,Krawiec W,et al.Adv.Mater.,1995,7(2): 154-156.
  • 7李强,赵竹第,欧玉春,漆宗能,王佛松.尼龙6/蒙脱土纳米复合材料的结晶行为[J].高分子学报,1997,7(2):188-193. 被引量:86
  • 8Messersmith P B,Giannelis E P.Chem.Mater.,1994,6(10): 1719-1724.

二级参考文献4

  • 1赵竹第,1995年全国高分子学术论文报告会论文集,1995年
  • 2莫志深,高分子材料科学与工程,1988年,3期,9页
  • 3吴培熙,工程塑料应用,1983年,3期,60页
  • 4杜强国,王荣海,陈文杰,王立惠.增韧尼龙6的结晶、热行为和加工性能[J].高分子材料科学与工程,1991,7(3):28-32. 被引量:11

共引文献96

同被引文献122

  • 1Wada K. Lattice expansion of kaolin minerals by treat-ment with potassium acetate[ J ]. The American Mineralo-gist, 1961 , 46( 1/2) : 78-91.
  • 2Val6Skov6 M , Kieder M, Mat^jka V , el al. Exfoliation/delaminalion of kaolinite by low-lemperature washing ofkaoiinite-urea intercalates (. J ]. Applied Clay Science,2007,35(1/2) : 108-118.
  • 3Hutkai G , Krist6f T. Molecular simulation study of inter-caiation of small molecules in kaolinite [ J ]. ChemicalPhysics2008 , 462(4/6) : 269-274.
  • 4Letaief S, Tonie I K, Diaco T, et al. Nanohyhrid materi-als from inlerlayer functionalization oi kaolinite. Applica-tion to the electrcKrhemical preconcentration of cyanide[J]. Applied Clay Science, 2008,42(1/2) ; 95-101.
  • 5Letaief S, ElbokI T A, Detellier C. Keactivity of ionicliquids with kaolinite : melt intercalation of ethyl pyridini-um chloride in an urea-kaolinite pre-intercalate [ J ]. Jour-nal of Colloid and Interface Science,2006,302 ( 1) ; 254 一258.
  • 6Wiewiora A, Brindley G W. Potassium acetate intercala-tion in kaolinite and its removal [ C] // Proceedings of theInternational Clay Conference, Tokyo, Japan, 1970: 179 -186.
  • 7Val6§kov6 M , Martynkovd G S, Mat^jka V, et al. Chem-ically activated kaolinites after de-intercalation of for-mamide[ J]. Ceramics, 2007 , 51(1): 24-29.
  • 8Guessoum M, Nekkaa S, Fenouillot-Rimlinger F,et al.Effects of kaolin surface treatments on thermomechanicalproperties and on the degradation of polypropylene [ J ].International Journal of Polymer Science, 2012, 50 (4):476-480.
  • 9Frost R L, Kristof J, Horvath E, et al. Vibrational spec-troscopy of formamide-intercalated kaolinites [ J ]. Spec-trochim Acta Part A : Molecular and Biomolecular Spec-troscopy ,2000,56(6) : 1191-1204.
  • 10Paul D R, Robeson L M. Polymer nanotechnology : nano-composites[ J]. Polymer,2008,49( 15 ) : 3187-3204.

引证文献2

二级引证文献4

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