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Nanoparticle poly

PP-g-MA) silicate nanocomposites and intercalated thermoset silicate nanocomposites for flame-retardant applications were characterised by XRD and TEM [333], XRD, TEM and FTIR were also used in the study of ID CdS nanoparticle-poly(vinyl acetate) nanorod composites prepared by hydrothermal polymerisation and simultaneous sulfidation [334], The CdS nanoparticles were well dispersed in the polymer nanorods. The intercalation of polyaniline (PANI)-DDBSA (dodecylbenzene-sulfonate) into the galleries of organo-montmorillonite (MMT) was confirmed by XRD, and significantly large 4-spacing expansions (13.3-29.6A) were observed for the nanocomposites [335],... [Pg.647]

Keyword Adjuvant Biodegradable nanoparticles Poly(y-glutamic acid) Protein delivery Vaccine... [Pg.32]

Betaxolol Nanoparticles Poly-e-caprolactone (PECL), poly [102]... [Pg.739]

Yuanqing, X., Dajun, C. (2007). Preparation of a novel pH-responsive silver nanoparticle/poly(HEMA-PEGMA-MAA) composite hydrogel. Eur. Polvm. L 43,4178-4187. [Pg.751]

Jeong, H.-S., Lee, S.-Y, 2011. Closely packed SiO 2 nanoparticles/poly(vinyUdene fluoride-... [Pg.236]

Methotrexate Magnetic nanoparticles— poly(ethylene glycol, magnetic nanoparticles-3-aminopropyl) trimethoxysilane Antineoplastic agent... [Pg.423]

Wang, Z., Roberge, C., Wan, Y. et al. (2003) Biodegradable electrical bioconductor made of polypyrrole nanoparticle/poly(D,L-lactide) composite A preliminary in vitro biostabihty study. Journal of Biomedical Materials Research - Part A, 66, 738-746. [Pg.236]

Wang, Q., and Yun, Y. (2012). A nanomaterial composed of cobalt nanoparticles, poly(3,4-ethylenedloxythiophene) and graphene with high electrocatal5dic activity for nitrite oxidation, Microchim Acta, 177, pp. 411-418. [Pg.468]

Park I, Lim Y, Noh S, Lee D, Meister M, Amsden JJ, et al. Enhanced photovoltaic performance of ZnO nanoparticle/poly(pheny lene vinylene) hybrid photovoltaic cells by semiconducting surfactant. Org Electron 2011 12(3) 424-8. [Pg.101]

We have focused on the design of multistimuli-responsive nanoparticles using a mixture of block copolymers having a common temperature-responsive segment. The shell-mixed nanoparticles (shell poly(N-isopropylacrylamide) (poly(NIPAAm)) and PEO segments) have been prepared via hydrophobic-hydrophobic interaction [44], stereocomplex interaction [45], and electrostatic interaction [46]. We used the temperature-responsive poly(NIPAAm) segment for the shell-mixed nanoparticles. Poly(NIPAAm)-fo-poly(NIPAAm-co-HMAAm)s... [Pg.10]

Tijing LD, Ruelo MT, Amarjargal A, Pant HR, Park CH, Kim CS (2012) One-step fabrication of antibacterial (silver nanoparticles/poly(ethylene oxide))-polyuiethane bicomponent hybrid nanofibrous mat by dual-spinneret electrospinning. Mater Chem Phys 134 557-561... [Pg.136]

Bhimaraj P, Burris DL, Action J, Sawyer WG, Toney CG, Siegel RW, Schadler LS (2005) Effect of matrix morphology on the wear and friction behavior of alumina nanoparticle/poly (ethylene) lerephthalate composites. Wear 258(9) 1437-1443... [Pg.172]

Zhao Y, Zhou Y, Wu X, Wang L, Xu L, Wei S. A facile method for electrospinning of Ag nanoparticles/poly (vinyl alcohol)/carboxymethyl-chitosan nanofibers. Appl Surf Sci. 2012 258(22) 8867-73. [Pg.103]

The metal precursor silver nitrate (Reanal, purity 99.9%), palla-dium(II) chloride, rhodium(III) chloride hydrate (purity 98 /o), and the reducing agent sodium borohydride (purity 99%) were obtained from Aldrich. A polymer was used to stabilize the Pd and Rh nanoparticles poly(A-vinyl-2-pyrrolidone) (PVP, K-30, average molecular weight 4x10" g, Fluka). [Pg.90]

Heterogeneous polymerization Precipitation Emulsion Dispersion PNIPAM microgel nanoparticles Poly(PNIPAM-co-AA) microgel nanoparticles NPs based on poly(butyl methacrylate) core and PNIPAM shell Colloidal nanospheres of poly(butylcyanoacrylate) with a magnetite core Pegylated NPs composed of N,N- diethylacrylamide and N,N-methylene bisacrylamide Berndt et al., 2006 Jones and Lyon, 2000 Gan and Lyon, 2003 Arias et al., 2008 Rieger et al., 2009... [Pg.371]

TYR Tyrrell, Z., Winoto, W., Shen, Y., and Radosz, M., Block copolymer micelles formed in supercritical fluid can become water-dispensable nanoparticles poly(ethylene glycol)-Z>/oc -poly(e-caprolactone) in trifluoromethane, Ind. Eng. Chem. Res., 48, 1928, 2009. [Pg.465]

Batra D, Seifot S, Varela LM, Liu ACY, Firestone MA (2007) Solvent-mediated plasmon tuning in a gold-nanoparticle-poly(ionic liquid) composite. Adv Funct Mater 17 1279-1287... [Pg.443]

Another important electroanalytieal application of modified electrodes is DNA detection [34-40]. Zhang et al. [39] produced an electrochemical DNA sensor based on silver nanoparticles/poly(trans-3-(3-pyridyl) aciylic acid) (PPAA)/multiwalled carbon nanotubes with carboxyl groups (MWCNTs-COOH) modified glassy carbon electrode (GCE). The polymer film was electropolymerized onto MWCNTs-COOH modified electrode by cyclic voltammetry, and then silver nanoparticles were electrodeposited on the surface of PPAA/MWCNTs-COOH composite film. The novel electrochemical detection method of DNA hybridization-based modified electrode has been developed with high sensitivity and selectivity. Furthermore the results of the experiment indicated that the DNA sensor is of excellent reusability. [Pg.179]

Zhang, Y., K. Zhang, and H. Ma, Electrochemical DNA biosensor based on silver nanoparticles/poly(3-(3-pyridyl) aciylic acid)/carbon nanotubes modified electrode. [Pg.193]


See other pages where Nanoparticle poly is mentioned: [Pg.3]    [Pg.108]    [Pg.739]    [Pg.739]    [Pg.739]    [Pg.544]    [Pg.71]    [Pg.394]    [Pg.337]    [Pg.427]   
See also in sourсe #XX -- [ Pg.1195 ]




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