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Nanocomposite PANI/epoxy

The polymer matrix more diffusely used in CP nanocomposites is epoxy, whereas as additive, PANI is the conducting polymer that is used more intensely. PANI is introduced in a resin in form of pigments [77-78], fibres [79-80], nanoparticles [73, 81-82] or as additive [83]. The effectiveness of both the EB and the ES form of PANI for corrosion protection has been studied [84-85]. Moreover, it has been varied the incorporation method of PANI PANI additive has been inserted in the hardener of epoxy [84] or directly in epoxy [85]. When EB-PANI is added to hardener, homogeneous... [Pg.559]

Dielectric constants have been reported for several polymers including PI [40-42], epoxy resins [43], PU [43], XLPE-PE [44], LDPE-zinc oxide nanocomposites [45], PANI nanofibres [46], doped polyimines derived from selenophene [40], Pl-zirconium propoxide nanocomposites [47] and PANI-cerium oxide composites [48]. [Pg.109]

Electrical conductivity measurements have been reported on a wide range of polymers including carbon nanofibre reinforced HOPE [52], carbon black filled LDPE-ethylene methyl acrylate composites [28], carbon black filled HDPE [53], carbon black reinforced PP [27], talc filled PP [54], copper particle modified epoxy resins [55], epoxy and epoxy-haematite nanorod composites [56], polyvinyl pyrrolidone (PVP) and polyvinyl alcohol (PVA) blends [57], polyacrylonitrile based carbon fibre/PC composites [58], PC/MnCli composite films [59], titanocene polyester derivatives of terephthalic acid [60], lithium trifluoromethane sulfonamide doped PS-block-polyethylene oxide (PEO) copolymers [61], boron containing PVA derived ceramic organic semiconductors [62], sodium lanthanum tetrafluoride complexed with PEO [63], PC, acrylonitrile butadiene [64], blends of polyethylene dioxythiophene/ polystyrene sulfonate, PVC and PEO [65], EVA copolymer/carbon fibre conductive composites [66], carbon nanofibre modified thermotropic liquid crystalline polymers [67], PPY [68], PPY/PP/montmorillonite composites [69], carbon fibre reinforced PDMS-PPY composites [29], PANI [70], epoxy resin/PANI dodecylbenzene sulfonic acid blends [71], PANI/PA 6,6 composites [72], carbon fibre EVA composites [66], HDPE carbon fibre nanocomposites [52] and PPS [73]. [Pg.110]

Pourabas and Peyghambardoost [53] showed that copper filled epoxy resin composite had electrical conductivity properties. Afzal and co-workers [104] studied the electrical properties of PANI/silver nanocomposites. The silver nanoparticles in PANI reduced the charge trapping centres and increased the conducting channels of the polymer. [Pg.115]

In the last twenty years, many polymers have been used to make polymer nanocomposites. Thermoplastic polymers include nylon, polyaniline (PANI), " poly(s-caprolactone), polycarbonate (PC), polyether ether ketone (PEEK), polyethylene (PE), poly(ethyl acrylate) (PEA), polyisoprene (PI), polylactide (PLA), poly(methyl methacrylate) (PMMA), " polypropylene (PP), polypyrrole (PPy)," polystyrene (ps)/ i i7,27,30,49-64 poiy inyl acetate) (PVAc), poly(vinyl alcohol) (PVA), poly(vinyl chloride) (PVC) and thermoplastic polyurethane (TPU), and thermosets include Bakelite, butadiene rubber, epoxy,polydimethylsiloxane (PDMS), polyurethane (PU), styrene-butadiene rubber (SBR) and unsaturated polyester resin. [Pg.143]


See other pages where Nanocomposite PANI/epoxy is mentioned: [Pg.143]    [Pg.506]    [Pg.567]    [Pg.568]    [Pg.143]   
See also in sourсe #XX -- [ Pg.506 ]




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