Method for producing purified polytetrafluoroethylene aqueous dispersion liquid, method for producing modified polytetrafluoroethylene powder, method for producing polytetrafluoroethylene molded body, and composition
A method for producing an aqueous dispersion of purified polytetrafluoroethylene, the method including: removing or reducing a compound represented by Formula (1) or (2) below from an aqueous dispersion of polytetrafluoroethylene obtained using a hydrocarbon surfactant: (H—(CF 2 ) m —COO) p M 1 ; or Formula (1): (H—(CF 2 ) n —SO 3 ) q M 2 . Formula (2): Also disclosed is a composition containing polytetrafluoroethylene substantially free from a compound represented by Formula (3) below and a molded body including the composition: (H—(CF 2 ) 8 —SO 3 ) q M 2 . Formula (3):
1. A method for producing powder of refined polytetrafluoroethylene, the method comprising: removing or reducing a compound represented by Formula (1) or (2) below from polytetrafluoroethylene powder obtained by a production method including performing emulsion polymerization of tetrafluoroethylene in an aqueous medium in the presence of a hydrocarbon surfactant to thereby generate the compound represented by Formula (1) or (2):
(H—(CF 2 ) m —COO) p M 1 Formula (1):
wherein m is 3 to 19, M 1 is H, a metal atom, NR 5 4 (where R 5 s may be the same as or different from each other and are each H or an organic group having 1 to 10 carbon atoms), an imidazolium optionally having a substituent, a pyridinium optionally having a substituent, or a phosphonium optionally having a substituent, and p is 1 or 2; or
(H—(CF 2 ) n —SO 3 ) q M 2 Formula (2):
wherein n is 4 to 20, M 2 is H, a metal atom, NR 5 4 (where R 5 s may be the same as or different from each other and are each H or an organic group having 1 to 10 carbon atoms), an imidazolium optionally having a substituent, a pyridinium optionally having a substituent, or a phosphonium optionally having a substituent, and q is 1 or 2.
2. The method for producing powder of refined polytetrafluoroethylene according to claim 1 , wherein the removal or reduction of a compound represented by Formula (1) or (2) above comprises heating the polytetrafluoroethylene powder obtained using the hydrocarbon surfactant at a temperature of 160° C. or more.
3. A method for producing a molded body of polytetrafluoroethylene, the method comprising:
a step (1a) of mixing a polytetrafluoroethylene powder that is produced using a hydrocarbon surfactant by a production method including performing emulsion polymerization of tetrafluoroethylene in an aqueous medium in the presence of a hydrocarbon surfactant to thereby generate the compound represented by Formula (1) or (2) with an extrusion aid,
a step (1b) of subjecting the mixture thus obtained to paste extrusion molding,
a step (1c) of drying the extrudate obtained by the extrusion molding, and
a step (1d) of obtaining a molded body by firing the extrudate after drying, said method further comprising
removing or reducing a compound from any of the polytetrafluoroethylene powder, the mixture, the extrudate or the molded body represented by Formula (1) or (2) below:
(H—(CF 2 ) m —COO) p M 1 Formula (1):
wherein m is 3 to 19, M 1 is H, a metal atom, NR 5 4 (where R 5 s m a y be the same as or different from each other and are each H or an organic group having 1 to 10 carbon atoms), an imidazolium optionally having a substituent, a pyridinium optionally having a substituent, or a phosphonium optionally having a substituent, and p is 1 or 2; or
(H—(CF 2 ) n —SO 3 ) q M 2 Formula (2):
wherein n is 4 to 20, M 2 is H, a metal atom, NR 5 4 (where R 5 s may be the same as or different from each other and are each H or an organic group having 1 to 10 carbon atoms), an imidazolium optionally having a substituent, a pyridinium optionally having a substituent, or a phosphonium optionally having a substituent, and q is 1 or 2.
4. The method for producing the molded body of polytetrafluoroethylene according to claim 3 , wherein the removal or reduction of a compound represented by Formula (1) or (2) above comprises heating at a temperature of 160° C. or more.