C08F126/02

Polymer functional film and method for producing same

The present invention provides a polymer functional film obtained by polymerizing and curing a composition including (A) a styrene-based monomer represented by Formula (HSM); (B) a crosslinking agent represented by Formula (CL); and (C) a polymerization initiator represented by Formula (PI-1) or (PI-2), and a method for producing the same: ##STR00001## in which R.sup.1 represents a halogen atom or N.sup.+(R.sup.2)(R.sup.3)(R.sup.4)(X.sub.1.sup.?); n1 represents an integer from 1 to 10; here, R.sup.2 to R.sup.4 each independently represent a particular substituent; X.sub.1.sup.? represents an organic or inorganic anion; L.sup.1 represents an alkylene group or an alkenylene group; Ra, Rb, Rc and Rd each independently represent a particular substituent; n2 and n4 each independently represent an integer from 1 to 10; X.sub.2.sup.? and X.sub.3.sup.? each independently represent an organic or inorganic anion; and R.sup.5 to R.sup.10 each represent a hydrogen atom or a particular substituent.

Polymer functional film and method for producing same

The present invention provides a polymer functional film obtained by polymerizing and curing a composition including (A) a styrene-based monomer represented by Formula (HSM); (B) a crosslinking agent represented by Formula (CL); and (C) a polymerization initiator represented by Formula (PI-1) or (PI-2), and a method for producing the same: ##STR00001## in which R.sup.1 represents a halogen atom or N.sup.+(R.sup.2)(R.sup.3)(R.sup.4)(X.sub.1.sup.?); n1 represents an integer from 1 to 10; here, R.sup.2 to R.sup.4 each independently represent a particular substituent; X.sub.1.sup.? represents an organic or inorganic anion; L.sup.1 represents an alkylene group or an alkenylene group; Ra, Rb, Rc and Rd each independently represent a particular substituent; n2 and n4 each independently represent an integer from 1 to 10; X.sub.2.sup.? and X.sub.3.sup.? each independently represent an organic or inorganic anion; and R.sup.5 to R.sup.10 each represent a hydrogen atom or a particular substituent.

PREPARATION OF N-VINYL CARBOXAMIDES IN A SERIES OF REACTOR UNITS

Disclosed herein is a process for producing polymers of an N-vinyl carboxamide, including the steps of flowing a reaction mixture containing an aqueous liquid containing at least one polymerisation initiator, N-vinyl carboxamide monomer or a monomer mixture containing N-vinyl carboxamide into a reactor system, and polymerising the monomer or monomer mixture to produce the polymer of a N-vinyl carboxamide. The polymers resulting therefrom may be hydrolysed to provide polymers containing vinyl amine units. Also disclosed herein is an apparatus suitable for producing the polymers.

PREPARATION OF N-VINYL CARBOXAMIDES IN A SERIES OF REACTOR UNITS

Disclosed herein is a process for producing polymers of an N-vinyl carboxamide, including the steps of flowing a reaction mixture containing an aqueous liquid containing at least one polymerisation initiator, N-vinyl carboxamide monomer or a monomer mixture containing N-vinyl carboxamide into a reactor system, and polymerising the monomer or monomer mixture to produce the polymer of a N-vinyl carboxamide. The polymers resulting therefrom may be hydrolysed to provide polymers containing vinyl amine units. Also disclosed herein is an apparatus suitable for producing the polymers.

Ligand functionalized polymers

Ligand functionalized substrates, methods of making ligand functionalized substrates, and methods of using functionalized substrates are disclosed.

Ligand functionalized polymers

Ligand functionalized substrates, methods of making ligand functionalized substrates, and methods of using functionalized substrates are disclosed.

METHOD OF PRODUCING AQUEOUS SOLUTION OF VINYLAMINE UNIT-CONTAINING POLYMER

A method comprising producing N-vinylformamide, polymerizing a monomer ingredient comprising the N-vinylformamide to produce a polymer comprising N-vinylformamide units, hydrolyzing the polymer using an acid or a base to produce an aqueous solution of a polymer comprising vinylamine units, and using the aqueous solution, wherein the storage period (2) from immediately after the production of the polymer to just before initiation of the production of the aqueous solution of a polymer comprising vinylamine units is made longer than the storage period (3) from immediately after the production of the aqueous solution to just before the use.

METHOD OF PRODUCING AQUEOUS SOLUTION OF VINYLAMINE UNIT-CONTAINING POLYMER

A method comprising producing N-vinylformamide, polymerizing a monomer ingredient comprising the N-vinylformamide to produce a polymer comprising N-vinylformamide units, hydrolyzing the polymer using an acid or a base to produce an aqueous solution of a polymer comprising vinylamine units, and using the aqueous solution, wherein the storage period (2) from immediately after the production of the polymer to just before initiation of the production of the aqueous solution of a polymer comprising vinylamine units is made longer than the storage period (3) from immediately after the production of the aqueous solution to just before the use.

Polyamine-dihydroxybenzoic acid conjugate hydrogels as iron chelators

Compositions and methods for making a composition comprising a polymer and one or more chelators covalently coupled to polymer, wherein the one or more chelators has a benzene ring with more than one hydroxyl group at any position that is free, or a derivative of the chelator, or a salt of the chelator and methods of use.

Polyamine-dihydroxybenzoic acid conjugate hydrogels as iron chelators

Compositions and methods for making a composition comprising a polymer and one or more chelators covalently coupled to polymer, wherein the one or more chelators has a benzene ring with more than one hydroxyl group at any position that is free, or a derivative of the chelator, or a salt of the chelator and methods of use.