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Nanofiber fabrication

Figure 7 SEM image of carbon nanofibers fabricated using a Ni/Si02 catalyst. The nickel catal)dic particles are seen here as capping light-colored spheres. Carbon nanotubes grow by decomposition of hydrocarbons on the surface of those metal particles followed by insertion into the carbon growing structures. (Reprinted Irom Ref. 49. 2003, with permission from Elsevier)... Figure 7 SEM image of carbon nanofibers fabricated using a Ni/Si02 catalyst. The nickel catal)dic particles are seen here as capping light-colored spheres. Carbon nanotubes grow by decomposition of hydrocarbons on the surface of those metal particles followed by insertion into the carbon growing structures. (Reprinted Irom Ref. 49. 2003, with permission from Elsevier)...
Ayutsede J et al (2005) Regeneration of Bombyx mori silk by electrospiiming. Part 3 characterization of electrospun nonwoven mat. Polymer 46(5) 1625-1634 Kwon IK, Matsuda T (2005) Co-electrospun nanofiber fabrics of poly(L-lactide-co-epsilon-caprolactone) with type I collagen or heparin. Biomacromolecules 6(4) 2096-2105... [Pg.129]

Matsumoto, H. ct al.. Characterization of chitosan nanofiber fabric by electrospray deposition Electrokinetic and adsorption behavior, J. Colloid Interf. Sci., 310, 678, 2007. [Pg.1032]

H. Dong, U. Megalamane, and W. Jones Jr. Conductive polyaniline/PMMA coaxial nanofibers fabrication and chemical sensing. Polymer Mater. Sci. Eng., 44(2), 124—125 (2003). [Pg.206]

Nguyen, T.T.T., Ghosh, C., Flwang, S.-G., Chanunpanich, N., and Park, J.S. (2012) Porous core/sheath composite nanofibers fabricated by coaxial electrospinning as... [Pg.296]

Nanofiber mats are produced by the process of electrostatic spinning [17]. These mats show a marked increase in water contact angle to values in the range of 150-160° (Fig. 1). Relafively simple equipment is employed for laboratory scale nanofiber fabrication. It consists of a hypodermic syringe, the plunger of which can be driven by a syringe pump. The metal needle of the syringe is pointed to-... [Pg.132]

Wang S, Sun Z, Yan E, Sun L, Huang N, Zang W, Ni L, Wang Q, Gao Y (2014) Spectrum-control of poly(p-phenylene vinylene) nanofibers fabricated by electrospinning with highly photoluminescent ZnS quantum dots. Int J Electrochem Sci 9 549-561... [Pg.135]

Ye S, Zhang D, Liu H, Zhou J (2011) ZnO nanocrystallites/cellulose hybrid nanofibers fabricated by electrospinning and solvothermal techniques and their photocatalytic activity. J Appl Pol5on Sci 121 1757-1764... [Pg.140]

Japan Vilene Co. Ltd and the National Institute of Advanced Industrial Science and Technology Kansai Center) developed a composite separator by lamination of the nonwoven polyacrilonitrile nanofiber fabric and ceramic powder holding polyolefin nonwoven fabric. In a hot oven test, the separator proved thermally stable at 150 °C [17]. [Pg.38]

Figure 15 Schematic diagram of the metallization route starting from the polymeric nanofibers fabricated using supramolecular assembly between PS-i>-P4VP and PDP (a) reduction and com-plexation of Pd ions with P4VP on Si-substrate (b) adsorption of CdSe nanoparticles on P4VP. (Reproduced from Ref. 60. Wiley-VCH, 2003.)... Figure 15 Schematic diagram of the metallization route starting from the polymeric nanofibers fabricated using supramolecular assembly between PS-i>-P4VP and PDP (a) reduction and com-plexation of Pd ions with P4VP on Si-substrate (b) adsorption of CdSe nanoparticles on P4VP. (Reproduced from Ref. 60. Wiley-VCH, 2003.)...
Ziabari, M.,Mottaghitalab, V, and Haghi, A. K. in Nanofibers Fabrication, Performance, and Applications, W. N. Chang (Ed.), Nova Science Publishers, USA, pp. 153-182 (2009),. R. H. Myers, D. C. Montgomery, and C. M. Anderson-cook (Eds), Response surface methodology process and product optimization using designed experiments, 3rd ed., John Wiley and Sons, USA (2009). [Pg.193]

Tang K., Yu Y, Mu X., van Aken P. A., and Maier J. Multichannel hollow TiOj nanofibers fabricated by single-nozzle electrospinning and their application for fast lithium storage. Electrochem. Commun. 28 (2013) 54-57. [Pg.313]

Sun K (2011) Preparations, properties and applications of chitosan based nanofibers fabricated by electrospinning. Expr Polym Lett 5(4) 342-361. doi 10.3144/expresspol5unlett.2011.34 Sun T, Mai S, Norton D, Haycock JW, Ryan AJ, MacNeil S (2005) Self-organization of skin cells in three-dimensional electrospun polyst3uene scaffolds. Tissue Eng 11(7—8) 1023-1033. doi 10.1089/ten.2005.11.1023... [Pg.429]

Xu, C. Y., R. Inai, M. Kotaki, and S. Ramakrishna (2004b). Electrospun nanofiber fabrication as synthetic extracellular matrix and its potential for vascular tissue engineering. Tissue Engineering 10(7-8) 1160-1168. [Pg.381]

Seo H, Matsumoto H, Hara S, Yako H, Minagawa M, Tanioka A, et al. Preparation of polysaccharide nanofiber fabrics by electrospray deposition additive effects of poly(efiiylene oxide). Polym 7 2005 37 391-8. [Pg.309]

Ziabari, M., Mottaghitalab, V., A.K. Haghi in Nanofibers Fabrication, Performance, and Applications, Nova Science Publishers, New York, 2009. [Pg.383]

A different example of miniaturized OLEDs, excellently integrated with nanofiber fabrication technologies and geometries, does not rely on conventional, planar architectures. These devices are realized via coaxial electro spinning... [Pg.282]


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