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您现在的位置:中国聚合物网 > 资料 > Chong Yon Composite 的搜索结果 共有结果959,当前从第941条到第950条,本次搜索耗时0.0156146
 
Synthesis and properties of novel cross-linked composite sulfonated poly (aryl ether ketone sulfone) containing multiple sulfonic side chains for high-performance proton exchange membranes
The synthesis and properties of novel cross-linked composite sulfonated poly (aryl ether ketone sulfone) containing multiple sulfonic side chains as proton exchange membranes were investigated. The multiple side-chain membranes were prepared by direct polycondensation and simple free radical reaction. The cross-linked composite membranes were prepared by solvent coating method. The prep...
http://www.polymer.cnt//ss/xujingmei/publicationsshow_14023.html
 
Fabrication of hydrotalcite containing N/P/S and its ternary synergistic efficiency on thermostability and fire resistance of ethylene vinyl acetate (EVA): Fabrication of N/P/S-HTC and synergistic effect to EVA/IFR composite
Nitrate intercalated hydrotalcite (NO3?‐HTC) was first prepared as precursor; a schiff base derivative containing N, P, and S was synthesized and its structure was characterized. Later the schiff base derivative was used as intercalation to replace NO3? in hydrotalcite. The final product was schiff base derivative intercalated hydrotalcite, which was named as benzaldehyde–taurine–hypophosphorou...
http://www.polymer.cnt//ss/zhangshengfrml/publicationsshow_13575.html
 
【Solid State Lonics】Enhanced cycling performance for all-solid-state lithium ion battery with lifepo4 composite cathode encapsulated by poly (ethylene glycol) (peg) based polymer electrolyte
Abstract: The poor contact between the cathode and the solid polymer electrolyte (SPE) is one of the primary causes for the low specific capacities of lithium ion batteries. In this work, a composite cathode material containing LiFePO4 nanoparticles encapsulated by PEG-based polymer electrolyte (coated LiFePO4) are prepared in order to increase the interfacial contact area between SPE and cat...
http://www.polymer.cnt//ss/luanshifang/publicationsshow_13516.html
 
Fabrication of Copolymer-Grafted Multiwalled Carbon Nanotube Composite Thermoplastic Elastomers Filled with Unmodified MWCNTs as Additional Nanofillers To Significantly Improve Both Electrical Conductivity and Mechanical Properties
Nanostructured materials have attracted tremendous attention in past decades owning to their wide range of potential applications in many areas. In this study, novel conductive composite thermoplastic elastomers (CTPEs) were fabricated by using a copolymer-grafted multiwalled carbon nanotube (MWCNT) composite thermoplastic elastomer filled with varied amounts of unmodified MWCNTs ...
http://www.polymer.cnt//ss/wangzhongkai/publicationsshow_9051.html
 
146. Fabrication of Copolymer-Grafted Multiwalled Carbon Nanotube Composite Thermoplastic Elastomers Filled with Unmodified MWCNTs as Additional Nanofillers To Significantly Improve Both Electrical Conductivity and Mechanical Properties
Nanostructured materials have attracted tremendous attention in past decades owning to their wide range of potential applications in many areas. In this study, novel conductive composite thermoplastic elastomers (CTPEs) were fabricated by using a copolymer-grafted multiwalled carbon nanotube (MWCNT) composite thermoplastic elastomer filled with varied amounts of unmodified MWCNTs as additional nan...
http://www.polymer.cnt//ss/zhigangwang/publicationsshow_8771.html
 
[Materials Science and Engineering: C] Preparation of pH-responsive Fe3O4/Poly (acrylic acid-stat-methyl methacrylate-block-(2-dimethylamino) ethyl methacrylate) magnetic composite microspheres and its application in controlled release of drug
Controlled radical polymerization based on 1, 1-diphenylethylene (DPE method) was used to prepare pH-responsive magnetic composite microspheres. By this method, Fe3O4/Poly (acrylic acid-stat-methyl methacrylate-block-(2-dimethylamino) ethyl methacrylate) (Fe3O4/P(AA-MMA-DMA)) microspheres were prepared via emulsifier free emulsion polymerization of acrylic acid (AA), methyl methacrylate (MMA) an...
http://www.polymer.cnt//ss/zhangqiuyu/publicationsshow_7821.html
 
34. Enhanced decolorization of azo dye solution by cadmium sulfide/multi-walled carbon nanotubes/polymer composite in combination with hydrogen peroxide under simulated solar light irradiation
A Cadmium sulfide/ multi-walled carbon nanotubes/polymer nanocomposite (CdS/MWCNTs/polymer) was fabricated via a facile precipitation process by depositing nanocrystalline CdS on carbon nanotubes/crosslinked chitosan nanocomposite films and  characterized by X-ray diffration (XRD). Under simulated solar light irradiation, a combination of CdS/MWCNTs/polymer and H2O2 (1.0 mM) was found to be...
http://www.polymer.cnt//ss/zhuhuayue/publicationsshow_6854.html
 
8. Effect of key operational factors on decolourization of methyl orange during H2O2 assisted nanosized CdS/TiO2/polymer composite thin films under simulated solar light irradiation
H.Y. Zhu, R. Jiang, Y.J. Guan, Y.-Q. Fu, L. Xiao, G.M. Zeng, 2010. Effect of key operational factors on decolourization of methyl orange during H2O2 assisted nanosized CdS/TiO2/polymer composite thin films under simulated solar light irradiation. Sep. Purif. Technol. 2010, 74: 187-194. (二区SCI/EI) [2010 IF2.774, Citation times: 15]
http://www.polymer.cnt//ss/zhuhuayue/publicationsshow_6819.html
 
Y. Yang, X.L. Zhu, W.G. Cui, X.H. Li,* Y. Jin. Electrospun composite mats of poly[(D,Llactide)-co-glycolide] and collagen with high porosity as potential scaffolds for skin tissue engineering. Macromol. Mater. Eng., 294: 611–619 (2009)
Y. Yang, X.L. Zhu, W.G. Cui, X.H. Li,* Y. Jin. Electrospun composite mats of poly[(D,Llactide)-co-glycolide] and collagen with high porosity as potential scaffolds for skin tissue engineering. Macromol. Mater. Eng., 294: 611–619 (2009)   onlinelibrary.wiley.com/doi/10.1002/mame.200900052/abstract
http://www.polymer.cnt//ss/xiaohongli/publicationsshow_1360.html
 
纳米碳酸钙呈带状分布的iPP/纳米CaCO3 复合材料力学性能的研究
关键字:Polypropylene, Nano-CaCO3 Stratified distribution, Mechanical property, Composite
高分子复合材料的性能与其相形态结构有很大关系。填料粒子在高分子基体的分散状态对复合材料性能也有很大的影响。
http://www.polymer.cn/research/dis_info13667
 
 
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