Polymers of bromostyrenes having controlled molecular weight
View Patent ↗A controlled molecular weight polymer of styrene is provided having bromine substituted thereon. Control of molecular weight is achieved by the use of alpha-methyl styrene dimer as a chain transfer agent. The brominated polymer of styrene is useful as a flame retardant, particularly for polyamides giving improved properties including color retention after molding.
1. Polymers of ar-bromostyrene monomers having the following general structure
where R is H and x is 3, where the polymers have an assigned weight average molecular weight (MW) compared with a polystyrene standard as measured by gel permeation chromatography of from about 11,000 to about 60,000, wherein the polymers further comprise residues of α-methyl styrene dimer.
2. The polymers of claim 1 further comprising units derived from copolymerization with a comonomer selected from the group consisting of glycidyl(meth)acrylate, maleic anhydride, hydroxyethylmethacrylate, acrylic acid, ar-amino substituted styrene, styrene sulfonic acid, salts of styrene sulfonic acid and mixtures thereof.
3. The polymers of claim 1 further comprising units derived from copolymerization with a comonomer selected from the group consisting of styrene, butadiene acrylonitrile, methyl-(meth)acrylate, divinyl benzene, isoprene, n-butylacrylate, α-methyl styrene, p-methyl styrene and mixtures thereof.
4. The polymers of claim 1 in which the α-methyl styrene dimer residue bears at least one aromatically bound polar compatibilizing group chosen from the group of —NH 2 , —N═C═O, amines, carboxylic acids, salts of carboxylic acids, amides, esters and epoxides.
5. Polymers of ar-bromostyrene monomers having the following general structure
where R is H and x is 3, where the polymers have an assigned weight average molecular weight of from about 11,000 to about 60,000, wherein the polymers retain at least 88% of their mass after 20 minutes and at least 85% of their mass after 30 minutes when a 10 mg specimen is held at 330° C. under a nitrogen atmosphere.