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ChemicalBook--->CAS DataBase List--->25101-45-5

25101-45-5

25101-45-5 Structure

25101-45-5 Structure
IdentificationBack Directory
[Name]

POLY(ETHYLENE-ALT-CHLOROTRIFLUOROETHYLENE)
[CAS]

25101-45-5
[Synonyms]

1-chloro-1,2,2-trifluoroethene,ethene
chlorotrifluoro-ethenpolymerwithethene
Poly(chlorotrifluoroethene-co-ethylene)
POLY(ETHYLENE-ALT-CHLOROTRIFLUORO- &
Chlorotrifluoroethene polymer with ethene
POLY(ETHYLENE-CO-CHLOROTRIFLUOROETHYLENE)
POLY(ETHYLENE-ALT-CHLOROTRIFLUOROETHYLENE)
Chlorotrifluoroethylene-ethylene copolymer
Ethene, chlorotrifluoro-, polymer with ethene
POLY(ETHYLENE-ALT-CHLOROTRIFLUORO-ETHYLE NE), MELT INDEX 15-20
[Molecular Formula]

C4H4ClF3
[MDL Number]

MFCD00212537
[MOL File]

25101-45-5.mol
[Molecular Weight]

144.523
Chemical PropertiesBack Directory
[Melting point ]

242 °C
[density ]

1.68 g/mL at 25 °C(lit.)
[form ]

pellets
[EPA Substance Registry System]

Ethene, chlorotrifluoro-, polymer with ethene (25101-45-5)
Safety DataBack Directory
[WGK Germany ]

3
Hazard InformationBack Directory
[Chemical Properties]

Chlorotrifluoroethylene-ethylene copolymers (ECTFE) contain about 50 mole % chlorotrifluoroethylene. These copolymers are generally similar to the tetrafluoroethylene-ethylene copolymers in that they are melt-processable and have high impact strength and good chemical resistance. The temperature range of useful performance is from about - 80°C to 170°C. Chlorotrifluoroethylene-ethylene copolymers find use in injection mouldings for chemical process equipment and cable insulation.
[Chemical Properties]

ECTFE has thermal and oxidative stability up to 150–175 ° C. It is chemically inert to a number of chemicals and solvents and has good permeability resistance. The copolymer is 50–55% crystalline, depending on the method of preparation.
[Uses]

Wire and cable insulation is the primary application of ECTFE.
[Production Methods]

PCTFE is a polymer of chlorotrifluoroethylene. Copolymerization of ethylene and chlorotrifluoroethylene is carried out by aqueous suspension techniques, by low-temperature polymerization initiated by oxygen-activated triethylboron in dichlorotetrafluoroethane, and by radiation-induced polymerization.
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