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您现在的位置:中国聚合物网 > 全站 > Momentive Performance Materials 的搜索结果 共有结果1908,当前从第471条到第480条,本次搜索耗时0.031272
 
Development of High Performance Biodegradable Polymers Having Sugar or Nucleoside Branches
关键字:Development,High,Performance,Biodegradable,Polymers,Having,Sugar,Nucleoside,Branches,
  Takao Raku, Yutaka TokiwaNational Institute of Advanced Industrial Science and Technology (AIST), TsukubaCentral 6, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8566, Japan  Carbohydrates are useful natural resources for the development of new high performance materials. Various types of vinyl sugars have been developed using chemical catalysts. However, previously known vinyl sugars or vinyl nuc...
http://www.polymer.cn/Industry/industry257.html
 
课题组论文被Journal of Materials Science: Materials in Electronics录用
祝贺课题组论文被Journal of Materials Science: Materials in Electronics录用。
http://www.polymer.cn/ss/zhangdongzhi/newsshow_2808.html
 
Characterization of Polymeric Materials based on Liquid Rubbers Characterization of Polymeric Materials based on Liquid Rubbers
关键字:Liquid Rubbers
The synthesis of liquid hydrocarbon rubbers with terminalhydroxyl, amine, hydrazide, acylhydrazone, oxyethylamide,etc. was realized by radical polymerization of dienemonomers in the presence of azocompounds with vari ousfunctional groups a common for...
http://www.polymer.cn/research/ct_info958
 
The Synthesis and Properties of Nanoscale Ionic Materials Based on Graphene
关键字:graphene, nanoscale ionic materials, suspension, rheology
     Nanoscale ionic materials (NIMs) are a type of organic-inorganic hybrid materials consisting of inorganic nanocores, charged corona covalently attached to the core9 and oppositely charged canopy electrostatically coupled with ...
http://www.polymer.cn/research/dis_info17269
 
Characterization of Polymeric Materials based on Liquid Rubbers Characterization of Polymeric Materials based on Liquid Rubbers
关键字:Liquid Rubbers
The synthesis of liquid hydrocarbon rubbers with terminalhydroxyl, amine, hydrazide, acylhydrazone, oxyethylamide,etc. was realized by radical polymerization of dienemonomers in the presence of azocompounds with vari ousfunctional groups a common for...
http://www.polymer.cn/research/dis_info9323
 
STRUCTURING OF MATERIALS VIA HYDROGEN-BONDED SUPRAMOLECULAR POLYMERS
关键字:STRUCTURING,MATERIALS,VIA,HYDROGEN,BONDED,SUPRAMOLECULAR,POLYMERS,
Supramolecular polymers,[1] organized via hydrogen bonds, are an increasingly important class of polymeric materials, where designed intermolecular interactions allow a specific tailoring of the resulting material properties.
http://www.polymer.cn/research/dis_info5989
 
Polymer nanolayers on solid materials and particles as a way to prepare novel biomaterials
关键字:Polymer,nanolayers,solid,materials,particles,prepare,novel,biomaterials,
Polymer containing nanocomposites with well-defined morphology can hardly be prepared by means of traditional polymer processing technology.
http://www.polymer.cn/research/dis_info5182
 
Research and Development of Nano-structured Materials at CSIRO
关键字:Research,Development,Nano,structured,Materials,CSIRO,
Nanomaterials are a new generation of materials containing nanosized particles.They offer significantly enhanced physical and functional properties unattainable byconventional polymer composites in terms of stiffness, strength, barrier properties, heat re...
http://www.polymer.cn/research/dis_info4612
 
Sythnthesis of functional and pattern-able scaffold materials for tissue engineering
关键字:Sythnthesis,functional,pattern,able,scaffold,materials,tissue,engineering,
Sythnthesis of functional and pattern-able scaffold materials for tissue engineering
http://www.polymer.cn/research/dis_info4354
 
PREPARATION OF POLYIMIDE/SILICA NANOCOMPOSITE MATERIALS FROM WATER GLASS
关键字:PREPARATION,POLYIMIDE,SILICA,NANOCOMPOSITE,MATERIALS,FROM,WATER,GLASS,
Polyimide/silica nanocomposite films were prepared via a novel sol-gel route using silicic acid oligomer (SAO) as silane precursor., and polyamic acid (PAA) prepared from pyromellitic dianhydride (PMDA) and  4, 4’-oxydianiline (ODA) in&nbs...
http://www.polymer.cn/research/dis_info3291
 
 
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