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Vinyl 2-Ethylhexyl Ether

Vinyl Ether Refractive Index Specific Gravity Pounds per Gallon 25°C Typical Vinyl Ether Content [Pg.484]


The rate of polymerization of vinyl 2-ethylhexyl ether catalyzed by iodine is proportional to [/2] [M] in accordance with an initiation-rate-controlling process... [Pg.223]

Ethylvinylhexyl Ether (Vinyl-2-ethylhexyl Ether). See in Vol 6, E339-R to E340-L... [Pg.260]

Poly(vinyl 2-ethylhexyl ether) 156.27 Poly[l-(o-chlorophenyl)ethyl methacrylate] 224.69 ... [Pg.745]

Synonyms 1-Ethenoxy-2-ethylhexane Vinyl-2-ethylhexyl ether Empmeal C,oH2oO... [Pg.1118]

Vinyl-2-ethylhexyl ether. See 2-Ethylhexyl vinyl ether... [Pg.1415]

Eley and Pepper [10] polymerized vinyl -butyl ether in bulk and in petroleum ether over the temperature range of 20 -94°C using a 2% solution of SnCl4 in petroleum ether as the catalyst. The polymerization kinetics of vinyl 2-ethylhexyl ether was studied similarly [3]. [Pg.240]

Mono (2-ethylhexyl) phthalate Nonoxynol-4 Nonoxynol-6 Nonoxynol-7 Oleyl alcohol PEG di-2-ethylhexoate PEG-3 di-2-ethylhexoate PEG-8 distearate PEG-12 distearate PEG-7 glyceryl cocoate PEG-20 stearate Pine (Pinus palustris) tar Polyglyceryl-10 tetraoleate PPG-17 Propylene glycol myristate Stearyl nitrile Sucrose octaacetate Tributyl phosphate Tri-o-cresyl phosphite Tri-p-cresyl phosphite Vinyl isobutyl ether plasticizer, plastisol applies. [Pg.5545]

Fig. 4.10. Relationship between dynamic resilience and (T-Tg) for poly (vinyl alkyl ether) vulcanizates O, ethyl A, n-butyl , isobutyl O, n-pentyl n-hexyl V, n-octyl , 2-ethylhexyl T = test temperature, T. Fig. 4.10. Relationship between dynamic resilience and (T-Tg) for poly (vinyl alkyl ether) vulcanizates O, ethyl A, n-butyl , isobutyl O, n-pentyl n-hexyl V, n-octyl , 2-ethylhexyl T = test temperature, T.
Ethylhexyl vinyl ether [37769-62-3, 103-44-6] M 156.3, h 177-178 /atm. amines as polymerization inhibitors. These are removed by fractional distn. [Pg.239]

EINECS 203-468-6, see Ethylenediamine EINECS 203-470-7, see Allyl alcohol EINECS 203-472-8, see Chloroacetaldehyde EINECS 203-481-7, see Methyl formate EINECS 203-523-4, see 2-Methylpentane EINECS 203-528-1, see 2-Pentanone EINECS 203-544-9, see 1-Nitropropane EINECS 203-545-4, see Vinyl acetate EINECS 203-548-0, see 2,4-Dimethylpentane EINECS 203-550-1, see 4-Methyl-2-pentanone EINECS 203-558-5, see Diisopropylamine EINECS 203-560-6, see Isopropyl ether EINECS 203-561-1, see Isopropyl acetate EINECS 203-564-8, see Acetic anhydride EINECS 203-571-6, see Maleic anhydride EINECS 203-576-3, see m-Xylene EINECS 203-598-3, see Bis(2-chloroisopropyl) ether EINECS 203-604-4, see 1,3,5-Trimethylbenzene EINECS 203-608-6, see 1,3,5-Trichlorobenzene EINECS 203-620-1, see Diisobutyl ketone EINECS 203-621-7, see sec-Hexyl acetate EINECS 203-623-8, see Bromobenzene EINECS 203-624-3, see Methylcyclohexane EINECS 203-625-9, see Toluene EINECS 203-628-5, see Chlorobenzene EINECS 203-630-6, see Cyclohexanol EINECS 203-632-7, see Phenol EINECS 203-686-1, see Propyl acetate EINECS 203-692-4, see Pentane EINECS 203-694-5, see 1-Pentene EINECS 203-695-0, see cis-2-Pentene EINECS 203-699-2, see Butylamine EINECS 203-713-7, see Methyl cellosolve EINECS 203-714-2, see Methylal EINECS 203-716-3, see Diethylamine EINECS 203-721-0, see Ethyl formate EINECS 203-726-8, see Tetrahydrofuran EINECS 203-729-4, see Thiophene EINECS 203-767-1, see 2-Heptanone EINECS 203-772-9, see Methyl cellosolve acetate EINECS 203-777-6, see Hexane EINECS 203-799-6, see 2-Chloroethyl vinyl ether EINECS 203-804-1, see 2-Ethoxyethanol EINECS 203-806-2, see Cyclohexane EINECS 203-807-8, see Cyclohexene EINECS 203-809-9, see Pyridine EINECS 203-815-1, see Morpholine EINECS 203-839-2, see 2-Ethoxyethyl acetate EINECS 203-870-1, see Bis(2-chloroethyl) ether EINECS 203-892-1, see Octane EINECS 203-893-7, see 1-Octene EINECS 203-905-0, see 2-Butoxyethanol EINECS 203-913-4, see Nonane EINECS 203-920-2, see Bis(2-chloroethoxy)methane EINECS 203-967-9, see Dodecane EINECS 204-066-3, see 2-Methylpropene EINECS 204-112-2, see Triphenyl phosphate EINECS 204-211-0, see Bis(2-ethylhexyl) phthalate EINECS 204-258-7, see l,3-Dichloro-5,5-dimethylhydantoin... [Pg.1482]

Acetamido-4-amino-6-chloro-s-triazine, see Atrazine Acetanilide, see Aniline, Chlorobenzene, Vinclozolin Acetic acid, see Acenaphthene, Acetaldehyde, Acetic anhydride. Acetone, Acetonitrile, Acrolein, Acrylonitrile, Aldicarb. Amyl acetate, sec-Amyl acetate, Bis(2-ethylhexyl) phthalate. Butyl acetate, sec-Butyl acetate, ferf-Butyl acetate, 2-Chlorophenol, Diazinon. 2,4-Dimethylphenol, 2,4-Dinitrophenol, 2,4-Dinitrotoluene, 1,4-Dioxane, 1,2-Diphenylhydrazine, Esfenvalerate. Ethyl acetate, Flucvthrinate. Formic acid, sec-Hexyl acetate. Isopropyl acetate, Isoamyl acetate. Isobutyl acetate, Methanol. Methyl acetate. 2-Methvl-2-butene. Methyl ferf-butvl ether. Methyl cellosolve acetate. 2-Methvlphenol. Methomvl. 4-Nitrophenol, Pentachlorophenol, Phenol. Propyl acetate. 1,1,1-Trichloroethane, Vinyl acetate. Vinyl chloride Acetoacetic acid, see Mevinphos Acetone, see Acrolein. Acrylonitrile. Atrazine. Butane. [Pg.1518]

HMX HMX HMX HMX HMX HMX HMX HMX HMX HMX HMX HMX HNS NTO NTO/HMX NTO/HMX NTO/HMX PETN PETN PETN PETN PETN PETN PETN PETN PETN PETN RDX RDX RDX RDX RDX RDX RDX RDX RDX RDX RDX RDX RDX TATB/HMX Cariflex (thermoplastic elastomer) Hydroxy-terminated polybutadiene (polyurethane) Hydroxy-terminated polyester Kraton (block copolymer of styrene and ethylene-butylene) Nylon (polyamide) Polyester resin-styrene Polyethylene Polyurethane Poly(vinyl) alcohol Poly(vinyl) butyral resin Teflon (polytetrafluoroethylene) Viton (fluoroelastomer) Teflon (polytetrafluoroethylene) Cariflex (block copolymer of butadiene-styrene) Cariflex (block copolymer of butadiene-styrene) Estane (polyester polyurethane copolymer) Hytemp (thermoplastic elastomer) Butyl rubber with acetyl tributylcitrate Epoxy resin-diethylenetriamine Kraton (block copolymer of styrene and ethylene-butylene) Latex with bis-(2-ethylhexyl adipate) Nylon (polyamide) Polyester and styrene copolymer Poly(ethyl acrylate) with dibutyl phthalate Silicone rubber Viton (fluoroelastomer) Teflon (polytetrafluoroethylene) Epoxy ether Exon (polychlorotrifluoroethylene/vinylidine chloride) Hydroxy-terminated polybutadiene (polyurethane) Kel-F (polychlorotrifluoroethylene) Nylon (polyamide) Nylon and aluminium Nitro-fluoroalkyl epoxides Polyacrylate and paraffin Polyamide resin Polyisobutylene/Teflon (polytetrafluoroethylene) Polyester Polystyrene Teflon (polytetrafluoroethylene) Kraton (block copolymer of styrene and ethylene-butylene)... [Pg.12]

The first use of the ion as an initiator was by Eley and Richards (73) who polymerised 2-ethylhexyl vinyl ether in chloroform/liquid sulphur dioxide and m-cresol solutions using triphenylmethyl chloride as initiator. The appearance of the characteristic intense yellow colour proved the presence of the carbo-cation. [Pg.19]

Copolymers of acrylonitrile and methyl acrylate and terpolymers of acrylonitrile, styrene, and methyl methacrylate are used as bamer polymers. Acrylonitrile copolymers and multipolymers containing butyl acrylate, ethyl aciylate, 2-ethylhexyl acrylate, hydroxyethyl acrylate, methyl methaciylate. vinyl acetate, vinyl ethers, and vinylidene chlonde are also used in bamer films, laminates, and coatings. Environmentally degradable polymers useful in packaging are prepared from polymerization of acrylonitrile with styrene and methyl vinyl ketone. [Pg.21]


See other pages where Vinyl 2-Ethylhexyl Ether is mentioned: [Pg.741]    [Pg.605]    [Pg.1318]    [Pg.77]    [Pg.121]    [Pg.238]    [Pg.343]    [Pg.357]    [Pg.483]    [Pg.616]    [Pg.857]    [Pg.1448]    [Pg.1455]    [Pg.741]    [Pg.212]    [Pg.343]    [Pg.605]    [Pg.1318]    [Pg.77]    [Pg.121]    [Pg.238]    [Pg.343]    [Pg.357]    [Pg.483]    [Pg.616]    [Pg.857]    [Pg.1448]    [Pg.1455]    [Pg.784]    [Pg.517]    [Pg.1107]    [Pg.1946]    [Pg.1457]    [Pg.784]    [Pg.245]    [Pg.1160]    [Pg.2034]    [Pg.2092]    [Pg.1107]    [Pg.1946]    [Pg.89]    [Pg.56]    [Pg.192]   


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ETHYLHEXYL

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