|
Single Polymer Chain Properties Investigated by Dynamic Nanofishing Techniques
关键字:Dynamic Nanofishing Techniques Atomic force microscope (AFM) has enabled us to visualizea small world consisting of atoms and molecules. Weare able to visualize a single polymer chain, as many researchers have already reported. In practice, a single polymer&nbs...
http://www.polymer.cn/research/dis_info9257 |
|
New Polymer Technology for Hydrogenated Acrylonitrile-Butadiene Rubber
关键字:Acrylonitrile-Butadiene Rubber ZEON CORPORATION has developed some extremely uniquehydrogenated acrylonitrile-butadiene rubbers(HNBR’s). One new range of polymers exhibits significantimprovement in compression set which is one of the mostimportant property for the sealing applications...
http://www.polymer.cn/research/dis_info9219 |
|
Viscoelasticity of Multi-component Polymer Systems
关键字: multiphase/multi-component polymers Rheological measurement has been an effective method to characterize the structure and properties for multiphase/multi-component polymers, owing to its sensitivity to the structure change of heterogeneous systems.
http://www.polymer.cn/research/dis_info9079 |
|
Dynamic and Static Fatigue of Unidirectional Carbon Nanotube Rope Reinforced Polymer Composites
关键字:Unidirectional Although the mechanical properties of carbon nanotubes (CNTs) have been extensively studied in recent years, the question that how long these nanometer-sizedtubes can last when subjected to prolonged static or cyclic mechanical loadingremai...
http://www.polymer.cn/research/dis_info9072 |
|
Introducing Reactive Groups into Polymer Chains by Radiation Induce Grafting Technique
关键字:Reactive groups Reactive groups such as acid groups, expoxy groups can be introduced into polymer chains by radiation induced graft polymerization technique. The general procedure ofpre-irradiation induced grafting technique can be divided into tow steps.
http://www.polymer.cn/research/dis_info9068 |
|
Microstructure-Property Relations in Polymer/Carbon Nanotube Materials
关键字:Microstructure-Property It is well known that incorporation of conducting fillers such as carbon black, graphite, metal particles, carbon fibers and carbon nanotubes can make insulating polymerselectrically conductive
http://www.polymer.cn/research/dis_info9066 |
|
Bistable Electrical Switching and Electronic Memory Effects in Electroactive Polymer Nanocomposites
关键字:Electroactive Electrical switching and memory phenomena in polymers have emerged as an active research topic in organic electronics in recent years. Polymer electronic memories arepotentially an alternative or a supplementary technology to the convention...
http://www.polymer.cn/research/dis_info9064 |
|
Dispersion and Micro-Structure of Polymer/Silica Composites
关键字:Polymer/Silica Composites Polymer/inorganic particle nanocomposites have attracted considerable attention owing to their excellent processability, mechanical, optical, electric, magnetic,bioactive and gas sensitive properties.
http://www.polymer.cn/research/dis_info9041 |
|
PVC-based Polymer Nanocomposites: Processing, Fracture and Cyclic Fatigue
关键字:Cyclic Fatigue PVC-based polymer nanocomposites were formed by added calcium carbonate, a common PVC filler (average particle size was 60 nm), in nanoparticulate form to VC K57 resins with Ca-Zn based thermal stabilizers and lubricants. and 0&nb...
http://www.polymer.cn/research/dis_info9019 |
|
Dynamic Monte Carlo simulation for highly efficient polymer blend photovoltaics
关键字:photovoltaics Highly efficient photo-induced charge transfer in polymer blend promises huge potential application in organic solar cells. It is highly desirable to develop computational approach to design organic materials with high power conversion effi...
http://www.polymer.cn/research/dis_info8964 |
|