期刊文献+

超临界流体快速膨胀制备和分散氮化硼纳米片及其高分子复合材料的构建 被引量:4

Preparation of Dispersed Boron Nitride Nanosheets via Rapid Expansion of Supercritical Suspension and Fabrication of Their Polymeric Composites
下载PDF
导出
摘要 氮化硼纳米片(BNNSs)是一种拥有优良导热、力学、化学稳定性和热稳定性等的二维纳米材料,具有许多独特的应用价值,其制备技术及性能的研究是近年来材料科学领域研究的热点之一。以六方氮化硼(h-BN)为原料,利用超临界流体快速膨胀法(RESS)对氮化硼进行剥离,制备出氮化硼纳米片。同时,通过嵌入高分子基体法防止其重新聚集,将氮化硼纳米片分散入高分子基体中,得到了具有优异力学性能的氮化硼/高分子复合材料。 Boron nitride nanosheets(BNNSs)is a two-dimensional nanomaterial with excellent thermal cunductivity,mechanical properties,chemical and thermal stability.They have many unique application in many fields.Preparation technology and performance of this nanomaterial are one of the hot topics in the field of materials science in recent years.Using hexagonal boron nitride(h-BN)powder as the raw material,this investigation utilizes rapid expansion of supercritical suspension technology to prepare BNNSs.Meanwhile,by being embed into polymer chains,the BNNSs were dispersed into the polymer matrix,and boron nitride/polymer nanocomposites with excellent mechanical properties wwere obtained.
作者 王腾飞 孙长久 孔德玉 张得利 郭红革 赵健 WANG Tengfei;SUN Changjiu;KONG Deyu;ZHANG Deli;GUO Hongge;ZHAO Jian(Key Laboratory of Rubber-Plastics,Ministry of Education/Shandong Provincial Key Laboratory of Rubber-Plastics,Qingdao University of Science and Technology,Qingdao 266042,China;School of Light Industry Science and Engineering,Qilu University of Technology,Jinan 250353,China;Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education,Hangzhou Normal University,Hangzhou 311121,China;State Key Laboratory of Polymer Materials Engineering,Sichuan University,Chengdu 610065,China)
出处 《青岛科技大学学报(自然科学版)》 CAS 2019年第6期65-70,共6页 Journal of Qingdao University of Science and Technology:Natural Science Edition
基金 国家自然科学基金资助项目(51873096) 山东省重点研发计划项目(2017GGX20132) 山东省自然科学基金面上项目(ZR201807060363,ZR2019MEM001) 高分子材料工程国家重点实验室开放课题基金资助项目(sklpme2019-4-29) 有机硅化学及材料技术教育部重点实验室开放基金资助项目(KFJJ2019004)
关键词 氮化硼纳米片 超临界流体 分散 高分子基复合材料 boron nitride nanosheets supercritical fluid dispersion polymer composite
  • 相关文献

参考文献1

二级参考文献43

  • 1ZhangSA, KeYC, CaoXY, MaYM, WangFS. J ApplPolymSci, 2012, 124(6): 4874~4881.
  • 2Wang J J, Yi X S. J Appl Polym Sci, 2003, 89(14) : 3913~3917.
  • 3CuiW, ZhuY, YuanX, ChenK, KangF. J AlloyCompd, 2012, 540: 165~169.
  • 4Li Y, Huang X Y, Hu ZW, JiangPK, Li ST, TanakaT. ACSApplMater Interfaces, 2011, 3(11): 4396~4403.
  • 5Meziani M J, Song W L, Wang P, Lu F S, Hou Z L, Anderson A, Maimaiti H, Sun Y P. ChemPhysChem, 2015, 16(?) : 1339~ 1346.
  • 6Bozlar M, He D, Bai J, Chalopin Y, Mingo N, Volz S. Adv Mater, 2010, 22(14) : 1654~1658.
  • 7CuiW, DuFP, ZhaoJ C, ZhangW, YangYK, XieXL, MaiYW. Carbon, 2011, 49(2): 495~500.
  • 8ArabyS, ZhangLQ, Kuan H C, DaiJ B, MajewskiP, MaJ. Polymer, 2013, 54(14): 3663~3670.
  • 9Kong Q Q, LiuZ, GaoJ G, ChenCM, ZhangQ, ZhouGM, TaoZC, ZhangX H, WangMZ, LiF, CaiR. AdvFunct Mater 2014, 24(27): 4222~4228.
  • 10Seshadri I~ Esquenazi G L, Cardinal T, Borca-Tasciuc T, Ramanath G. Nanotechnology, 2016, 27(17): 175601.

共引文献14

同被引文献30

引证文献4

二级引证文献9

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