Claims
- 1. A degradable olefin copolymer having a backbone comprising nonhydrolyzable monomer units and hydrolyzable monomer units, wherein:
(a) the nonhydrolyzable monomer units result from polymerization of nonhydrolyzable olefin monomers; and (b) the hydrolyzable monomer units result from polymerization of hydrolyzable olefin monomers containing at least one linkage that is hydrolytically cleavable under acidic or basic conditions, wherein the linkage is selected from enol ether, acyclic acetal, hemiacetal, anhydride, carbonate, N-substituted amido, N-substituted urethane, N-substituted imino, imido, substituted imido, N,N-disubstituted hydrazo, thioester, phosphonic ester, sulfonic ester, ortho ester, ether, thio, and siloxyl.
- 2. The copolymer of claim 1, wherein the nonhydrolyzable monomer units derive from polymerization of acyclic olefin monomers.
- 3. The copolymer of claim 1, wherein the nonhydrolyzable monomer units derive from polymerization of cyclic olefin monomers.
- 4. The copolymer of claim 1, wherein there are no adjacent hydrolyzable monomer units in the copolymer.
- 5. The copolymer of claim 1, wherein the hydrolyzable monomer units contain a single hydrolytically cleavable linkage.
- 6. The copolymer of claim 5, wherein the hydrolytically cleavable linkage is selected from enol ether, acyclic acetal, anhydride, imido, and siloxyl.
- 7. The copolymer of claim 5, wherein the linkage is hydrolytically cleavable under acidic conditions.
- 8. The copolymer of claim 5, wherein the linkage is hydrolytically cleavable under basic conditions.
- 9. The copolymer of claim 1, comprising two or more different nonhydrolyzable monomer units.
- 10. The copolymer of claim 1, containing a single type of nonhydrolyzable monomer unit.
- 11. The copolymer of claim 1, wherein the hydrolyzable monomer units represent about 0.1 mole % to about 50 mole % of the copolymer.
- 12. The copolymer of claim 11, wherein the hydrolyzable monomer units represent about 10 mole % to about 50 mole % of the copolymer.
- 13. The copolymer of claim 12, wherein the hydrolyzable monomer units represent at least 15 mole % of the copolymer.
- 14. The copolymer of claim 13, wherein the hydrolyzable monomer units represent at least 20 mole % of the copolymer.
- 15. The copolymer of claim 1, wherein:
the nonhydrolyzable monomer units are of the form —R1CH—CHR2—, wherein R1 is hydrido or C1-C24 alkyl, and R2 is hydrido, alkyl, alkenyl, aryl, alkaryl, or halo, or where R1 and R2 taken together form a hydrocarbylene linkage; and the hydrolyzable monomer units are of the form —CHR3—CH2—(L1)m—X—(L2)n—CH2—CHR4— wherein R3 and R4 are independently hydrido, alkyl, aryl or substituted aryl, L1 and L2 are optionally substituted and/or heteroatom-containing hydrocarbylene groups, m and n are independently 0 or 1, and X is the hydrolytically cleavable linkage.
- 16. The copolymer of claim 15, wherein R1, R2, R3, and R4 are hydrido.
- 17. The copolymer of claim 16, wherein m and n are 1, and L1 and L2 are lower alkylene.
- 18. The copolymer of claim 17, wherein L1 and L2 are methylene.
- 19. The copolymer of claim 17, wherein at least one of L1 and L2 is substituted with a lower alkenyl group.
- 20. The copolymer of claim 16, wherein m and n are zero.
- 21. A degradable olefin copolymer prepared by addition polymerization, in the presence of a catalytically effective amount of a metallocene complex of a Group 4, 5, or 6 transition meta and a catalyst activator that renders the complex cationic or zwitterionic, of a monomer mixture containing at most 80 mole % of at least one nonhydrolyzable olefin monomer and at least 20 mole % of a diolefin monomer containing a hydrolytically cleavable linkage selected from a cyclic acetal linkage and an ester linkage.
- 22. The copolymer of claim 21, wherein the hydrolytically cleavable linkage is a cyclic acetal linkage.
- 23. The copolymer of claim 21, wherein the hydrolytically cleavable linkage is an ester linkage.
- 24. A degradable olefin copolymer prepared by addition polymerization, in the presence of a catalytically effective amount of a transition metal complex and a catalyst activator that renders the complex cationic or zwitterionic, of a monomer mixture containing: at most 80 mole % of at least one nonhydrolyzable monomer of the form R1CH═CHR2, wherein R1 is hydrido or C1-C24 alkyl, and R2 is hydrido, alkyl, alkenyl, aryl, alkaryl, or halo, or where R1 and R2 taken together form a hydrocarbylene linkage; and at least 20 mole % of a hydrolyzable monomer of the form R3CH═CH—(L1)m—X—(L2)n—CH═CHR4 wherein R3 and R4 are independently hydrido, alkyl, aryl or substituted aryl, L1 and L2 are optionally substituted and/or heteroatom-containing hydrocarbylene groups, m and n are independently 0 or 1, and X is a hydrolytically cleavable linkage,
wherein the transition metal complex is selected from a metallocene complex of a Group 4, 5, or 6 transition metal and a 1,2-diimine complex of a Group 8 transition metal or an analog thereof.
- 25. A blend comprising the degradable copolymer of any one of claims 1, 21, and 24, and at least one additional polymer.
- 26. The blend of claim 25, wherein the additional polymer is a degradable polymer.
- 27. The blend of claim 26, wherein the additional polymer is a hydrolyzable polymer.
- 28. The blend of claim 25, wherein the additional polymer is a nonhydrolyzable polymer.
- 29. The blend of claim 27, further including a nondegradable polymer.
- 30. A blend comprising about 5 wt. % to about 99 wt. % of a mixture of degradable polymers and about 1 wt. % to 95 wt. % of a nondegradable polymer, wherein the mixture of degradable polymers is composed of about 30 wt. % to about 95 wt. % of the copolymer of any one of claims 1, 21, and 24, and about 5 wt. % to about 70 wt. % of at least one additional degradable polymer.
- 31. The blend of claim 30, wherein the at least one additional degradable polymer includes starch.
- 32. The blend of claim 30, wherein the nondegradable polymer is selected from low density polyethylene, high density polyethylene, linear low density polyethylene, ethylene-propylene rubber, polystyrene, polyvinylchloride, polyhalocarbons, polychloroprene, polybutadiene, polyisoprene, polyisobutylene, nitrile-butadiene rubber, styrene-butadiene rubber, chlorinated polyethylene, chlorosulfonated polyethylene, epichlorohydrin rubber, butyl rubber, halobutyl rubber, copolymers of ethylene with propylene, isobutene, butene, hexene, octene, vinyl chloride, vinyl alcohol, and combinations thereof.
- 33. A degradable article at least partially comprising a degradable copolymer composed of at most 80 mole % of nonhydrolyzable monomer units resulting from polymerization of nonhydrolyzable olefin monomers, and at least 20 mole % of hydrolyzable monomer units resulting from polymerization of hydrolyzable olefin monomers containing at least one linkage that is hydrolytically cleavable under acidic or basic conditions.
- 34. The article of claim 33, selected from films, fibers, foams, woven fabrics, nonwoven fabrics, and molded articles.
- 35. The article of claim 33, further comprising at least one additional degradable component.
- 36. The article of claim 33, further comprising a nondegradable polymer.
- 37. The article of claim 35, further comprising a nondegradable polymer.
- 38. The article of claim 33, selected from: agricultural film products; adhesive tape substrates; bed linens; containers; disposable absorbent articles; packaging materials; bags; labels; pillow cases; protective clothing; surgical drapes; sponges; tampon applicators; disposable syringes; temporary enclosures and temporary siding; toys; wipes; foamed plastic products; and controlled release pellets, strips and tabs.
- 39. The article of claim 33, in the form of a disposable absorbent article.
- 40. The article of claim 39, comprising a water-permeable topsheet, a water-impermeable backsheet, and an absorbent core therebetween, wherein at least one of the topsheet and the backsheet is comprised of the degradable copolymer.
- 41. The article of claim 40, in the form of a diaper, sanitary napkin, incontinence pad, or pantyliner.
- 42. The article of claim 33, wherein:
the nonhydrolyzable olefin monomers are addition polymerizable monomers of the form R1CH═CHR2, wherein R1 is hydrido, C1-C24 alkyl, substituted C1-C24 alkyl, C1-C24 heteroalkyl, or substituted C1-C24 heteroalkyl, and R2 is hydrido, C1-C24 alkyl, substituted C1-C24 alkyl, C1-C24 heteroalkyl, substituted C1-C24 heteroalkyl, C2-C24 alkenyl, substituted C2-C24 alkenyl, C2-C24 heteroalkenyl, substituted C2-C24 heteroalkenyl, C5-C24 aryl, substituted C5-C24 aryl, C5-C24 heteroaryl, substituted C5-C24 heteroaryl, C6-C24 alkaryl, substituted and/or heteroatom-containing C6-C24 alkaryl, or halo, or wherein R1 and R2 are linked to form a cyclic group; and the hydrolyzable olefin monomers are addition polymerizable monomers of the form R3CH═CH—(L1)m—X—(L2)n—CH═CHR4 wherein R3 and R4 are independently hydrido, C1-C24 alkyl, substituted C1-C24 alkyl, C1-C24 heteroalkyl, substituted C1-C24 heteroalkyl, C5-C24 aryl, substituted C5-C24 aryl, C5-C24 heteroaryl, or substituted C5-C24 heteroaryl, m and n are independently zero or 1, L1 and L2 are optionally substituted and/or heteroatom-containing hydrocarbylene, and X is a hydrolytically cleavable linkage.
- 43. The article of claim 42, wherein:
R1 is hydrido or C1-C12 alkyl; and R2 is hydrido, C1-C12 alkyl, substituted C1-C12 alkyl, C1-C12 heteroalkyl, substituted C1-C12 heteroalkenyl, C2-C12 alkenyl, substituted C2-C12 alkenyl, C2-C12 heteroalkenyl, substituted C2-C12 heteroalkenyl, C5-C14 aryl, substituted C5-C14 aryl, C5-C14 heteroaryl, substituted C5-C14 heteroaryl, C6-C16 alkaryl, substituted and/or heteroatom-containing C6-C16 alkaryl, or halo, or wherein R1 and R2 are linked to form a bridge —Q— wherein Q is a three-atom to seven-atom hydrocarbylene spacer; R3 and R4 are independently hydrido, C1-C12 alkyl, substituted C1-C12 alkyl, C1-C12 heteroalkyl, substituted C1-C12 heteroalkyl, C5-C14 aryl, substituted C5-C14 aryl, C5-C14 heteroaryl, or substituted C5-C14 heteroaryl; L1 and L2 are independently lower alkylene optionally substituted and/or containing a hydrolytically cleavable linkage; and X is selected from —(CO)—O—, —CH═CH—O—, —O—CR2—O—, —CH(OH)—O—, —(CO)—O—(CO)—, —O—(CO)—O), —(CO)—NR—, —O—(CO)—NR—, —CH2—NR—, —CHR—NR—, —CR2—NR—, —CH═N—, —CR═N—, —Cy1(═O)—, —Cy2—, —NR—NR—, —Cy3Cy4—, —(CO)—S—, —P(O)(OR)—O—, —SO2—OR—, —C(OR)2—O—, —O—, —S—, —S—S—, —SiR′R″—O—SiR′R″—, —O—SiR′R″—O—, —SiR′R″—NR—SiR′R″—, and —NR—SiR′R″—NR—), wherein R is optionally substituted and/or heteroatom-containing C1-C12 hydrocarbyl, R′ and R″ are independently selected from hydrido and optionally substituted and/or heteroatom-containing C1-C12 hydrocarbyl, Cy1 is a nitrogen containing heterocycle, Cy2 is a five- or six-membered ring containing a —CH═N— linkage, and Cy3 and Cy4 are five- or six-membered rings each containing an acetal linkage.
- 44. The article of claim 43, wherein:
R1 is hydrido or lower alkyl; R2 is hydrido, lower alkyl, substituted lower alkyl, lower heteroalkyl, substituted lower heteroalkyl, C5-C14 aryl, substituted C5-C14 aryl, C5-C14 heteroaryl, substituted C5-C14 heteroaryl, C6-C16 alkaryl, substituted and/or heteroatom-containing C6-C16 alkaryl, or halo; R3 and R4 are independently hydrido or lower alkyl; L1 and L2 are independently lower alkylene optionally substituted with an allyl group; R is lower alkyl; and R′ and R″ are selected from hydrido, lower alkyl, and lower alkoxy.
- 45. The article of claim 44, wherein R3 and R4 are hydrido and L1 and L2 are unsubstituted lower alkylene.
- 46. The article of claim 44, wherein R3 and R4 are hydrido and m and n are zero.
- 47. A composition for preparing a degradable article, comprising the degradable copolymer of any one of claims 1, 21, and 24, and at least one additive selected from additional degradable components, nondegradable polymers, anti-oxidants, pro-oxidants, stability enhancers, tensile strength enhancers, photosensitizers, colorants, plasticizers, tackifiers, fillers, antistatic agents, flame retardants, and opacifiers.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 09/900,597, filed Jul. 6, 2001, which is a divisional of U.S. patent application Ser. No. 09/408,286, filed Sep. 29, 1999, now U.S. Pat. No. 6,288,184. The disclosures of the aforementioned applications are incorporated by reference in their entireties.
Divisions (1)
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Number |
Date |
Country |
Parent |
09408286 |
Sep 1999 |
US |
Child |
09900597 |
Jul 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09900597 |
Jul 2001 |
US |
Child |
10392270 |
Mar 2003 |
US |