Claims
- 1. An improved porous polymer in granular or bead form and useful for catalyzing oxidation by hydrogen peroxide, consisting essentially of phenyl or pyridyl groups, being linked together in polyphenylene, or pendant from a polymethylenic backbone which is crosslinked by a divinylarylene at least some of which phenyl or pyridyl groups are substituted on the ring by arsenic groups; wherein the improvement comprises freedom from nitrogenous and oxygen-containing substituents on the aromatic rings of said polymer thereby achieving high stability toward hydrogen peroxide, such that the polymer can be reused repeatedly to catalyze oxidation by hydrogen peroxide, and can be separated in solid form from the product mixture in liquid form, without substantial loss of arsenic content; and wherein the said arsenic groups are --AsPh(OR), --As(OR).sub.2, --AsPh(O) (OH), --As(O) (OH).sub.2 or a mixture thereof, "R" being hydrocarbyl.
- 2. Polymer of claim 1 having a polymethylenic backbone crosslinked by divinylbenzene and having phenyl or pyridyl groups pendant from alternate carbon atoms of the backbone.
- 3. Polymer of claim 2 wherein said pendant groups are phenyl and said arsenic groups are --As(OEt).sub.2 or --As(O) (OH).sub.2 or a mixture thereof, substituted into at least 10% of the phenyl groups.
- 4. Process for production of polymer in accordance with claim 1, comprising the steps of
- (a) substituting lithium for halogen upon a ring carbon atom of a phenyl group, or for hydrogen on a ring carbon atom adjacent to ring nitrogen, in at least some of the phenyl groups in a polyphenylene, or phenyl or pyridyl groups in a crosslinked styrene or vinylpyridine polymer or copolymer therebetween, crosslinked by a divinylarylene;
- (b) contacting the resulting lithiated polymer with a di(hydrocarbyloxy)phenylarsine or with a trihydrocarbyloxyarsine whereby the lithium substituent is replaced by the As(III) group --AsPh(OR) or --As(OR).sub.2.
- 5. Process of claim 4 wherein said As(III) group is oxidized to As(V) and is hydrolyzed to the phenylarsono group --AsPh(O) (OH) or to the arsono group --As(O) (OH).sub.2.
- 6. Process of claim 4 wherein said lithiated polymer formed in step (a) is derived from macroporous crosslinked polystyrene/DVB by brominating a slurry of said polystyrene/DVB in darkness in contact with a bromination catalyst at -10.degree. to 50.degree. C.; separating the resulting bromination product from the liquid reaction medium; lithiating a slurry of the resulting bromination product with excess alkyllithium under inert atmosphere at -100.degree. to 80.degree. C.; and separating the resulting lithiated polymer from the liquid reaction medium; and wherein to a slurry of the lithiated polymer, an excess of arsine trialkoxide is added and the slurry is maintained at -10.degree. to 50.degree.; the polymer obtained, containing As(III), is thoroughly washed with polar solvent to remove unreacted arsine trialkoxide; and the resulting polymer is subjected to oxidation with aqueous H.sub.2 O.sub.2 at 10.degree. to 70.degree. C. to oxidize As(III) therein to As(V).
Parent Case Info
This is a continuation, of application Ser. No. 929,376, filed July 31, 1978 and now standing abandoned.
US Referenced Citations (3)
Foreign Referenced Citations (2)
Number |
Date |
Country |
44-10243 |
Jan 1969 |
JPX |
45-2728 |
Jan 1970 |
JPX |
Non-Patent Literature Citations (3)
Entry |
Talanta (1), vol. 17 of 1970, pp. 483-489. |
Talanta (2), vol. 23 of 1976, pp. 590-593. |
Angewandte Chemie, vol. 16 of 1977, pp. 493-558 (Int. Ed.). |
Continuations (1)
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Number |
Date |
Country |
Parent |
929376 |
Jul 1978 |
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