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层叠层技术组装纳米沸石——沸石涂饰纤维和沸石空 心纤维
引用本文:王亚军,胡建华,唐颐,杨武利,柯琛,王星东.层叠层技术组装纳米沸石——沸石涂饰纤维和沸石空 心纤维[J].化学学报,2001,59(7):1084-1088.
作者姓名:王亚军  胡建华  唐颐  杨武利  柯琛  王星东
作者单位:复旦大学化学系.上海(200433);复旦大学高分子系.上海(200433);教育部聚合 物分子工程重点实验室
基金项目:国家重点基础研究发展规划(2000077507),国家自然科学基金(29973011),教育部博士学科点专向科研基金和教育部高等学校骨干教师资助项目
摘    要:以纳米沸石为基元构件,通过层(layer-by-layer)组装技术在碳纤维模板上成功制备了纳米沸石涂饰纤维(zeolitecoatedfibers),焙烧除去碳纤维模板后,制微了完整的沸石空心纤维(hollowzeolitefibers),并系统研究了它们的制备条件和材料结构。发现纳米沸石胶体溶液的pH值是制备沸石涂饰纤维和空心沸石纤维的关键因素,其它条件,诸如吸附液的离子强度,每层吸附后的干燥以及每次干燥前是否用PDDA溶液预浸泡,对纤维的完美性也有影响。通过改变吸附纳米沸石的类型和层数可能调变沸石层的组成和厚度,而交替吸附不同的纳米沸石可能制备复合沸石涂饰纤维及复合空心沸石纤维。

关 键 词:层叠层  组装  纳米沸石  分子筛  碳纤维  沸石涂饰纤维  沸石空心纤维  沸石  纳米相材料  
修稿时间:2001年1月11日

Layer- by- layer Assembly of Nanozeolite Zeolite Coated Fibers and Hollow Zeolite Fibers
Wang Yajun,Hu Jianhua,Tang Yi,Yang Wuli,Ke Chen,Wang Xingdong.Layer- by- layer Assembly of Nanozeolite Zeolite Coated Fibers and Hollow Zeolite Fibers[J].Acta Chimica Sinica,2001,59(7):1084-1088.
Authors:Wang Yajun  Hu Jianhua  Tang Yi  Yang Wuli  Ke Chen  Wang Xingdong
Institution:Fudan Univ, Dept Chem.Shanghai(200433);Fudan Univ, Dept Macromolec. Shanghai(200433)
Abstract:Zeolite coated fibers (abbreviated as ZCF) were successfully fabricated using carbon fibers as templates and nanozeolite as building block, through layer-by-layer assembly technique. After removal of the templates by calcination, intact hollow fibers of zeolite (abbreviated as HFZ) were also obtained. The optimum performance conditions for obtaining these types of materials were systematically studied. The pH value of the zeolite colloidal solution was a key factor affecting the fabrication of these zeolite coated fibers and hollow zeolite fibers. Other conditions, such as ionic strength of the dipping solution, drying the samples after every layer of zeolite nanocrystals deposited and adsorbing a PDDA layer on the silicalite-1 coated carbon fibers before drying also had influence on fabricating intact fibers. The wall thickness and composition of these novel materials could be readily tailored by varying the number of nanozeolite/PDDA poly(diallyldimethyl ammonium chloride)] deposition cycles and zeolite types used, respectively. The hollow zeolite fibers with hybrid walls were also fabricated through stepwise deposition of different kinds of nanozeolites.
Keywords:ASSEMBLING  MOLECULAR SIEVE  CARBON FIBERS  ZEOLITE  NANOPHASE MATERIALS
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