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Composite nanofibers

Effect of oxidative treatments on catalytic property of carbon nanofiber composite... [Pg.721]

Olson, D. C. Piris, J. Collins, R. T. Shaheen, S. E. Ginley, D. S. 2006. Hybrid photovoltaic devices of polymer and ZnO nanofiber composites. Thin Solid Films 496 26-29. [Pg.466]

Shaffer M, Kinloch IA. Prospects for nanotube and nanofiber composites. Composites Science and Technology. 2004 Nov 64(15) 2281-2. [Pg.250]

Compared to microfiber controls, [65] the cell attachment, spreading, and infiltration were higher in micro/nanofiber composite scaffolds... [Pg.17]

Particulate polymer composites with fibers are a very active area of development, particularly carbon nanotubes and nanofiber composites, and the new graphite and polymer composites [35]. This fact, combined with the continued interest in nancomoposites based in nanometric clays [36], suggests that improvements in mechanical properties of particulate and short-fiber polymer composite materials will continue to be reported. [Pg.434]

Fig. 7.19 SEM micrographs of the NiS2/SiC nanofibers composite after the desulfurization test. The solid sulfur formed during the test was present in the form of large particles on the surface of the catalyst. Fig. 7.19 SEM micrographs of the NiS2/SiC nanofibers composite after the desulfurization test. The solid sulfur formed during the test was present in the form of large particles on the surface of the catalyst.
Y. Niu, Electromagnetic interference shielding with polyaniline nanofibers composite coatings, Polym. Eng. Sci., 48, 355-359 (2008). [Pg.80]

A. R. Hopkins, D. D. Sawall, R. M. Villahermosa, and R. A. Lipeles, Interfacial synthesis of electrically conducting polyaniline nanofiber composites. Thin Solid Films, 469-470, 304-308 (2004). [Pg.81]

M. Malta, G. Louam, N. Errien, and R. M. Torresi, Nanofibers composite vanadium oxide/ polyaniline synthesis and characterization of an electroactive anisotropic structure, Electrochem. Commun., 5, 1011-1015 (2003). [Pg.87]

S. Virji, J. D. Fowler, C. O. Baker, J. Huang, R. B. Kaner, and B. H. WeiUer, Polyaniline nanofiber composites with metal salts Chemical sensors for hydrogen sulfide. Small, 1,624-627 (2005). [Pg.95]

K. MaUick, M.J. Witcomb, A. Dinsmore, and M.S. Scurrell, Fabrication of a metal nanoparticles and polymer nanofibers composite material by in situ chemical synthetic route, Langmuir, 21, 7964-7967 (2005). [Pg.326]

Figure 14.6 Sensing ofHCI and NH3 using PPy/carbon nanofiber composites (a) SEM image of the nanofiber mat and (b) TEM of a single composite nanofibers (c) responses of the composite nanocables (a and b) and bulk PPy (c and d) to NHj (a and c) and HC (b and d) (Reprinted with permission from Sensors and Actuators B Chemical, CO gas sensing from ultrathin nano-composite conducting polymer film byM. K. Ram, O. Yavuz, f. Lahsangah and M. Aldissi, 106, 2, 750-757. Copyright (2005) Elsevier Ltd)... Figure 14.6 Sensing ofHCI and NH3 using PPy/carbon nanofiber composites (a) SEM image of the nanofiber mat and (b) TEM of a single composite nanofibers (c) responses of the composite nanocables (a and b) and bulk PPy (c and d) to NHj (a and c) and HC (b and d) (Reprinted with permission from Sensors and Actuators B Chemical, CO gas sensing from ultrathin nano-composite conducting polymer film byM. K. Ram, O. Yavuz, f. Lahsangah and M. Aldissi, 106, 2, 750-757. Copyright (2005) Elsevier Ltd)...
High-tenacity fibers have been demonstrated by dry-jet wet-spinning of anisotropic solutions of cellulose triacetate, but a product has not yet been commercialized [113,114], Nanofiber composites have been demonstrated by electro-spinning dilute cellulose acetate and triacetate solutions. These composites have exceptionally high specific surface area, and exciting new applications are envisioned [115], There are many new specialty applications, and research is continually finding new applications that take advantage of the unique balance of properties of cellulose acetate [107,109,110,116],... [Pg.808]

Peresin, M.S., Habibi, Y., Zoppe, J.O., Pawlak, J.J., Rojas, O.J. Nanofiber composites of polyvinyl alcohol and cellulose nanocrystals manufacture and characterization. [Pg.51]

Wang, J. G., Y. Yang, Z. H. Huang, and F. Kang. 2013. Effect of temperature on the pseudo-capacitive behavior of freestanding Mn02 carbon nanofibers composites electrodes in mild electrolyte. Journal of Power Sources 224 86-92. [Pg.211]

K. Zhang, L. L. Zhang, X. S. Zhao, J. Wu, Graphene/Polyaniline Nanofiber Composites as Supercapacitor Electrodes. Chem. Mater. 2010, 22, 1392-1401. [Pg.89]

Conductivity measurements were realized using broadband dielectric spectrometer. Nanofiber mat samples were prepared with the area of 4 cm for measurement As a result, conductivity values increased with an increase of PEDOT-PSS content at high frequency. Figure 5.19 shows the conductivity changes with the increase of the CP in the nanofiber composite. [Pg.156]

Synthesis of Polypyrrole and PEDOT Carbon Nanofiber Composites... [Pg.203]

The effects of poly(vinyl alcohol) and CdS quantum dots on the photoluminescence of PPV nanofibers have been assessed [90]. The nanofiber composites were fabricated by coupling a self-assembly method and an electrospinning method. [Pg.81]

Acids can act as dopants for polyaniline therefore, if the nanofibers are first doped with these acids, and subsequently exposed to the metal ions, precipitates should be formed on the surface of the nanofibers, leading to inorganic-polyaniline nanofiber composites. This idea has been applied in Section 7.3.5 to improve the detection of H2S. Another possibility is to use nanofibers as nucleation seeds to collect inorganic nanoparticles from supersaturated solutions [148]. [Pg.239]


See other pages where Composite nanofibers is mentioned: [Pg.293]    [Pg.3]    [Pg.6]    [Pg.121]    [Pg.987]    [Pg.170]    [Pg.76]    [Pg.81]    [Pg.200]    [Pg.598]    [Pg.132]    [Pg.133]    [Pg.147]    [Pg.173]    [Pg.187]    [Pg.20]    [Pg.318]    [Pg.461]    [Pg.335]   
See also in sourсe #XX -- [ Pg.433 ]




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Carbon nanofiber-polymer composites

Carbon nanotubes composite nanofibers

Cellulose composite nanofibers

Cellulose nanofiber-reinforced “green composites

Composite carbon nanofibers

Composite metal-polymer nanofiber

Composite nanofibers Metal-nanofiber composites

Composite nanofibers direct electrospinning

Composite nanofibers dispersion

Composite nanofibers nanofiber- nanoparticle

Composite nanofibers nanofiber-nanotube composites

Composite nanofibers orientation

Composite nanofibers polymer-clay composites

Composite polymer nanofibers

Metal-nanofiber composites

Nanofiber composite carbon

Nanofiber composites

Nanofiber composites

Nanofiber- nanoparticle composites

Nanofiber-Nanotube Composites

Nanofiber-Reinforced Composites

Nanofiber-nanotube composite nanofibers

Nanofibers as interlaminar reinforcement of composites

Nanofibers reinforced composites

Polymeric nanofibers chemical composition

Testing and modeling the mechanical behavior of nanofibers for composite applications

Water nanofiber composite

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