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您现在的位置:中国聚合物网 > 资料 > Nano 的搜索结果 共有结果744,当前从第111条到第120条,本次搜索耗时0.011715
 
The preparation of AgI Nano-powder by Non-aqueous Solvent method
关键字:silver iodide, nano-powder, elcohol solvent, Latin square
A new technique on the preparation of Silver iodide nano-powder from salt of silver and iodide ethanol solutions has been developed. Optimum preparing conditions were obtained through a series of experiments and Latin square exper...
http://www.polymer.cn/research/dis_info1447
 
Suspended Liquid of Nano-powder TiO2 and ZnO for Ultraviolet Resistance Finishing
关键字:Suspended Liquid, Nano-powder TiO2 and ZnO
Nano-powder TiO2 and ZnO possess excellent anti-Ultraviolet (UV) performance in UVB (280~320nm) and UVA (320~400nm) respectively, so that their use in UV resistance finishing is worth researching. To obtain better anti-UV performance in&n...
http://www.polymer.cn/research/dis_info1443
 
Numerical Simulation of the melting spinning of polymeric nano-composites
关键字:Simulation, Melting Spinning, polymeric nano-composites
A mathematical model based upon a combination of fundament of spinning and characteristic of nano-composite formation was developed for the simulation of both low-and high-speed melt spinning. The model predicted the effect of the ...
http://www.polymer.cn/research/dis_info1418
 
Silica Doped Nano-polyaniline with Endured Electrochemical Energy Storage and the Magnetic Field Effects
关键字:Silica, Nano-polyaniline, Electrochemical Energy Storage
     Phosphoric acid doped conductive polyainiline (PANI)/silica nanocomposites used as supercapacitor electrodes are tested in this article. The nanocomposites with 10.0, 20.0, 40.0, and 60.0 wt % silica nanoparticle loadings were synthesized via a facile surface initiated polymerization method. The morphology and chemical structure of the nanocomposites were ...
http://www.polymer.cn/research/sy_info19460
 
Polyurethane Reinforced by Nano-fiber Supramolecular Aggregates
关键字:Self-assembly, Nano-fiber, Molecule reinforce
     Molecular composite and in-situ composite materials have a distinct advantage in comparison with the traditional macro-fiber (such as glass fiber, carbon fiber, boron fiber, etc. ) reinforced materials. This is attribute...
http://www.polymer.cn/research/sy_info15151
 
Preparation and Characterization of Chitosan/CuPc/Nano-iron Magnetic Microspheres
关键字: Ethylenediamine , Chitosan , CuPc , Nano-iron , Magnetic microsphere
    Chitosan is a well-know excellent adsorbent for a number of organics and metal ions. The amino(-NH2) and hydroxyl(-OH) groups on chitosan chains can serve as the coordination and reaction sites in order to enhan...
http://www.polymer.cn/research/dis_info17327
 
Synthesis and Characterization of Novel Organic/lnorganic Nano-hybrids
关键字:S01-gel reaction, EPDM, Nano-hybrids
     A series of novel synthesis along with sol-gel reaction has been prepared through incorporating inorganic silica networks into the EPDM (Ethylene Propylene Diene Monomer) rubber. First of all, maleation of EPDM was&...
http://www.polymer.cn/research/dis_info17285
 
Polyurethane Reinforced by Nano-fiber Supramolecular Aggregates
关键字:self-assembly, nano-fiber, molecule reinforce
     Molecular composite and in-situ composite materials have a distinct advantage in comparison with the traditional macro-fiber (such as glass fiber, carbon fiber, boron fiber, etc. ) reinforced materials. This is attribute...
http://www.polymer.cn/research/dis_info17217
 
Unusual Nano-scale Phenomena in Highly Porous Polymer Systems Containing Graphite Nano-sheets
Porous polymers and polymer foams have found their applications not only in aerospace, marine and automotive industry but also in biomedical devices. Facile methods for pore formation and regulation remain a fascinating topic and ...
http://www.polymer.cn/research/dis_info16044
 
EFFECT OF NANO-STRUCTURED POLYMER SURFACES ON OSTEOBLAST ADHESION AND PROLIFERATION
关键字:cell-matrix interaction, osteoblast, nano-scale
Controlling cell-matrix interactions in the nanometer size scale is important for regulating cell phenotype in tissue engineering. We hypothesized that adhesion and proliferation of osteoblasts could be infiuenced by varying the nano-structured&...
http://www.polymer.cn/research/dis_info13172
 
 
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