高分子学报
高分子學報
고분자학보
ACTA POLYMERICA SINICA
2001年
1期
42-47
,共6页
潘玉?%于中振%欧玉春%冯宇鹏
潘玉?%于中振%歐玉春%馮宇鵬
반옥?%우중진%구옥춘%풍우붕
膨胀石墨%尼龙6%纳米复合材料%插层聚合%电导率
膨脹石墨%尼龍6%納米複閤材料%插層聚閤%電導率
팽창석묵%니룡6%납미복합재료%삽층취합%전도솔
通过原位插层聚合制备了尼龙6/石墨纳米导电复合材料,其室温导电渗滤阈值为=0.75vol%,远远低于常规导电粒子填充的聚合物复合材料.当石墨体积分数为2.0vol%时,室温电导率可达10-4S/cm.透射电镜研究表明:由于石墨经高温膨胀后其片层被剥离导致了片状石墨粒子具有巨大的径厚比,经原位插层聚合其片层厚度进一步被剥离为几十个纳米,同时原位插层聚合使得石墨粒子能够均匀分散在尼龙6基体中,因而导致了该导电复合材料的低渗滤阈值和高导电性能.
通過原位插層聚閤製備瞭尼龍6/石墨納米導電複閤材料,其室溫導電滲濾閾值為=0.75vol%,遠遠低于常規導電粒子填充的聚閤物複閤材料.噹石墨體積分數為2.0vol%時,室溫電導率可達10-4S/cm.透射電鏡研究錶明:由于石墨經高溫膨脹後其片層被剝離導緻瞭片狀石墨粒子具有巨大的徑厚比,經原位插層聚閤其片層厚度進一步被剝離為幾十箇納米,同時原位插層聚閤使得石墨粒子能夠均勻分散在尼龍6基體中,因而導緻瞭該導電複閤材料的低滲濾閾值和高導電性能.
통과원위삽층취합제비료니룡6/석묵납미도전복합재료,기실온도전삼려역치위=0.75vol%,원원저우상규도전입자전충적취합물복합재료.당석묵체적분수위2.0vol%시,실온전도솔가체10-4S/cm.투사전경연구표명:유우석묵경고온팽창후기편층피박리도치료편상석묵입자구유거대적경후비,경원위삽층취합기편층후도진일보피박리위궤십개납미,동시원위삽층취합사득석묵입자능구균균분산재니룡6기체중,인이도치료해도전복합재료적저삼려역치화고도전성능.
Electrically conducting nylon 6/graphite nanocomposites were elaborated via intercalation polymerization.Room temperature electrical conductivity measurement reveals a threshold of *=0\^75 vol% which is much lower than that of conventional conducting polymer composites.The electrical conductivity of the nanocomposite reaches 10\{-4\} S/cm at 2\^0 vol% graphite content.The TEM microphotographs verified that the low percolation threshold and improvement of conductivity could be attributed to the large diameter to thickness ratio,the high expansion ratio in c axis of the graphite sheets and the homogeneously dispersion of graphite particles with nanoscale thickness in the nylon 6 matrix.Because of the high expansion ratio (generally 200~300) of expanded graphite in c axis there are many pores of different sizes ranging from 10nm to 10μm in the internal space of graphite.Thus suitable monomer molecules and/or catalysts can be easily intercalated into the gallery spaces of graphite through physical adsorption.This is the main reason that in-situ polymerization can be initiated in the galleries of expanded graphite.