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Electrophoretic deposition of nickel, iron and aluminum nanoparticles on carbon fibers
The electrophoretic deposition (EPD) of nickel (Ni), iron (Fe) and aluminum (Al) nanoparticles fabricated by an active hydrogen plasma evaporation method on the surface of carbon fibers was investigated, which will allow the obtained composites to be applied as practical catalysts or electrodes. SEM observations show that the Ni nanoparticles can build up a thick EPD coating with some cracks on th...
http://www.polymer.cn//ss/luokun998/publicationsshow_2458.html |
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J. Mater. Chem. "Multichannel TiO2 hollow fibers with enhanced photocatalytic activity" 2010, 20, 5095 - 5099
This work describes that the photocatalytic activity of microsized TiO2 fibers for degrading gaseous acetaldehyde can be systematically enhanced by introducing nanostructured interior hollow channels, which is achieved by a facile multifluidic electrospinning method. The increased channel number augments the BET surface area of TiO2 fibers intuitively. A quite interesting phenomenon is that the pe...
http://www.polymer.cn//ss/zhaoyong/publicationsshow_2230.html |
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Electrospun ultra-fine silk fibroin fibers from aqueous solutions
By using electrospinning technique, beaded, cylinder shaped and ribbon like ultra-fine silk fibroin (SF) fibers were obtained from its concentrated aqueous solution under different processing conditions. These fibers had an average diameter of 700 nm and were characterized by scanning electron microscopy (SEM), Wide-angle X-ray diffraction (WAXD) and Raman spectroscopy. It was found that the...
http://www.polymer.cn//ss/yaopengzhang/publicationsshow_1731.html |
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A comparative study of bamboo Lyocell fiber and other regenerated cellulose fibers
A new type of regenerated cellulose fiber can be made from bamboo cellulose by the Lyocell process. In this paper, the morphology and crystal structure of the bamboo Lyocell fiber was investigated by optical microscopy, scanning electron microscopy, and wide angle X-ray diffractometry. Moreover, the mechanical properties, fibrillation behavior, moisture adsorption property, negative ion effect, an...
http://www.polymer.cn//ss/yaopengzhang/publicationsshow_1725.html |
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Chem. Mater. "Fabrication of Zeolite Hollow Fibers by Coaxial Electrospinning" 2008, 20, 3543.
Fabrication of Zeolite Hollow Fibers by Coaxial Electrospinning
http://www.polymer.cn//ss/zhaoyong/publicationsshow_1374.html |
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Research on Crystallization Behaviors of Surface-Modified Poly(ethylene terephthalate) Fibers
After the PET fibers were surface-modified, a new crystallization peak emerged in the DSC heating curves of PET fibers. Compared with those of normal PET fibers, the crystallization peaks of surface-modified PET fibers were shifted to lower temperature. It may be during the surface modification, the solution induced the part crystallization, and thus the crystallization of surface-modified PET fib...
http://www.polymer.cn//ss/dongzhizhi/publicationsshow_1075.html |
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Novel Fishnet Fibers with the Anti-adhesion of Seaweeds Obtained by UV-irradiation Technique
Journal of Materials Science,2007
(SCI:111QK)
http://www.polymer.cn//ss/chenli/publicationsshow_1064.html |
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Preparation and properties of novel fishnet fibers with inhibitory effects on the adhesion of seaweeds.
Journal of Materials Science(SCI:193UZ)
http://www.polymer.cn//ss/chenli/publicationsshow_1063.html |
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Novel Fishnet Fibers with the Anti-adhesion of Seaweeds Obtained by UV-irradiation Technique
Yi-Ping Zhao, Li Chen, Huan Zhang, Guo-Bu Zhao. Novel Fishnet Fibers with the Anti-adhesion of Seaweeds Obtained by UV-irradiation Technique. Journal of Applied Polymer Science. 2007,103(2): 1252-1256(SCI:111QK)
http://www.polymer.cn//ss/zhaoyiping/publicationsshow_1034.html |
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Preparation and properties of novel fishnet fibers with inhibitory effects on the adhesion of seaweeds
Yiping Zhao, Li Chen, Huan Zhang, Xianglin Qiu, Guobu Zhao, Bo Zhang. Preparation and properties of novel fishnet fibers with inhibitory effects on the adhesion of seaweeds. Journal of Materials Science, 2007,42(19):8287-8291 (SCI:193UZ,EI:073110742467)
http://www.polymer.cn//ss/zhaoyiping/publicationsshow_1033.html |
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