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Polyacryl ether ketone

Thermoset polymers like polyimide, crosslinked sulfonated poly(ether ether ketone) and polyacrylate can be used for membrane applications. The presence of nanoparticle nucleates the nanopore formation with the assistance of an agent. The nanopore is responsible for the solvent separation and transportation. Membranes such as solvent filters, filters for bacteria and virus, and membrane for gas separation can be developed using clay-polymer nanocomposites [118-119]. [Pg.340]

Another intrinsic approach has been proposed by Li et al. (2010). This time, the polymer network itself was used to heal the hydrophobicity by molecule displacement. The coating employed was made using layer-by-layer deposition of poly(allylamine hydrochloride) (PAH) with sulfonated polyether-ether-ketone (SPEEK) and polyacrylic acid (PAA) with final addition of lH,lH,2H,2H-perfluorooctyltriethoxysilane (POTS) by chemical vapour deposition (CVD) on the PAH-SPEEK/PAA coating. After removal of surface layers by O2 plasma, hydrophobicity was restored as a function of time and relative ambient humidity. [Pg.290]

Polybutylcyanoacrylates [63], polyacrylics [64], polybutadiene [65], flame retardant PE [66], PS [67-70], PS - divinyl benzene copolymer [71], PS - acrylonitrile copolymer [72], acrylonitrile-butadiene-styrene terpolymer [73, 74], styrene-maleic anhydride copolymer [75], polyvinyl-cyclohexane [76], polyphenylene triazine [77], poly-4-vinyl pyridine [78], polyethylene sulfide [79], PSF [80], brominated PES [81], tetrafluoroborate doped polythiophene [82], polysiloxane [56, 83], vinyl pyrrolidone-methacryloxy silicone copolymer [50], polyvinyl indene [84], poly-E-lactide [3, 85, 86], epoxy resins [87, 88], polyaryl ether ketone [89, 90], ethylene... [Pg.209]

PF = phenol-formaldehyde, UF = mea-formaldehyde, MF = melamine-formaldehyde, PAR = polyacrylate, PSU = polysulfone, PAI = polyamidimide, PAEK = polyaiyl ether ketone, TPE-E = thermoplastic elastomer (type E ethylene), UP = imsaturated polyester ... [Pg.62]

Alkyd and polyester resins, epoxy compounds, phenol-formaldehyde resin, urea and/or melamine-aldehyde resin, cyclic urea resin, carbamide acid ester formaldehyde resin, ketone formaldehyde resin, polyurethane, polyvinylester, polyvinyl acetate, polyvinyl chloride and polymer mixtures, polyethylene, polystryrene, styrene mixtures and graft copolymers, polyamide, polycarbonate, polyvinyl ether, polyacrylic and methacrylic acid esters, polyvinyl flouride, polyvinylidene chloride copolymers, UV and/or electron irradiated lacquers. [Pg.45]

Isophorone [14.268], [14.269] is an unsaturated cyclic ketone. It consists of a-isophorone [78-59-1] (3,5,5-trimethyl-2-cyclohexen-l-one), which contains about 1-3% of the isomer P-isophorone [471-01-2] (3,5,5-trimethyl-3-cyclohexen-l-one). Isophorone is a stable, water-white liquid with a mild odor that is miscible in all proportions with organic solvents. It dissolves many natural and synthetic resins and polymers, such as poly(vinyl chloride) and vinyl chloride copolymers, poly(vinyI acetate), polyacrylates, polymethacrylates, polystyrene, chlorinated rubber, alkyd resins, saturated and unsaturated polyesters, epoxy resins, cellulose nitrate, cellulose ethers and esters, damar resin (dewaxed), kauri, waxes, fats, oils, phenol-, melamine-, and urea-formaldehyde resins, as well as plant protection agents. However, isophorone does not dissolve polyethylene, polypropylene, polyamides. [Pg.361]

Ethyl acetate [79-20-9] is a colorless, neutral liquid that is partially miscible with water and has a pleasant, fruity odor. It has a good solvency for cellulose nitrate, cellulose ethers, chlorinated rubber, poly(vinyl acetate), vinyl chloride copolymers, polyacrylates, polystyrene, fats, oils, and many natural and synthetic resins (alkyd resins, saturated polyesters, ketone resins). Cellulose acetate is, however, dissolved only in the presence of small amounts of ethanol. Poly(vinyl chloride) is insoluble. [Pg.363]

Isobutyl acetate [110-19-0] is a colorless, neutral liquid with a pleasant, fruity odor. It is miscible with organic solvents, but immiscible with water. Isobutyl acetate has a high solvency for cellulose nitrate, colophony, damar resin, ketone and ketone-formaldehyde resins, maleate resins, urea and melamine resins, and phenolic and alkyd resins. Polymers such as polystyrene, poly(vinyl ethers), poly(vinyl acetate), polyacrylates, chlorinated rubber and vinyl chloride copolymers, as well as fats, greases, and oils are readily dissolved. Postchlorinated poly(vinyl chloride) is less soluble. Polyisobutene, cellulose ethers, polymethacrylates, poly(vinyl butyrals), natural rubber, and manila copal are swollen. Shellac, cellulose acetate, cellulose acetobutyrate, poly(vinyl chloride), and poly(vinyl formal) are insoluble. [Pg.363]

N.N-Dimethylformamide [68-12-2] (DMF) [14.276] is miscible with water and organic solvents except aliphatic hydrocarbons. It is a good high-boiling solvent for cellulose esters, cellulose ethers, poly(vinyl chloride), vinyl chloride copolymers, poly(vinyl acetate), polyacrylonitrile, polystyrene, chlorinated rubber, polyacrylates, ketone resins, and phenolic resins. Alkyd resins and resin esters are partially soluble. Dimethylformamide does not dissolve polyethylene, polypropylene, urea-formaldehyde resins, rubber, and polyamides. It is used as a solvent in printing inks, for polyacrylonitrile spinning solutions [14.277], and as a solvent in the synthesis of acetylene. [Pg.372]

Polyolefins Polystyrenes Polyacrylates Polymethacrylates Polyacrylonitriles Polyacrylamides Poly(vinyl halides) Poly(vinylidene halides) Poly(vinyl ethers) Poly(vinyl ketones) Poly(vinyl esters) Poly(vinyl pyridines) Polydienes Polyethers Polyesters, aliphatic Polyesters, aromatic Polyamides Polysiloxanes Polyphosphazenes Polysulfones... [Pg.422]


See other pages where Polyacryl ether ketone is mentioned: [Pg.17]    [Pg.230]    [Pg.17]    [Pg.230]    [Pg.369]    [Pg.169]    [Pg.933]    [Pg.23]    [Pg.167]    [Pg.167]    [Pg.844]    [Pg.844]    [Pg.364]    [Pg.167]    [Pg.359]    [Pg.371]    [Pg.1526]    [Pg.844]    [Pg.313]    [Pg.364]   
See also in sourсe #XX -- [ Pg.17 , Pg.21 , Pg.59 , Pg.73 , Pg.112 ]




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Polyacrylate

Polyacrylates

Polyacrylic

Polyacrylics

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