Claims
- 1. Intra-ocular lens comprising a cross-linked high refractive index polysiloxane, said polysiloxane comprising a clustered configuration of refractive index modifying groups chemically bonded to the polysiloxane backbone via an alkanediyl-bridge such that one alkanediyl-bridge binds at least two refractive index modifying groups to said backbone.
- 2. Intra-ocular lens according to claim 1, wherein the refractive index modifying groups are independently selected from the group consisting of cyclic, straight chain and branched chain hydrocarbon moieties.
- 3. Intra-ocular lens according to claim 1, wherein the refractive index modifying groups are independently selected from the group consisting of aromatic groups, aryl groups, arylalkyl groups, cycloalkyl groups and branched alkyl groups.
- 4. Intra-ocular lens according to claim 3, wherein the refractive index modifying groups are phenyl groups.
- 5. Intra-ocular lens according to claim 1, wherein the alkanediyl-bridge is an ethanediyl bridge.
- 6. Intra-ocular lens according to claim 1, wherein the clustered configuration of refractive index modifying groups comprises a central silicon atom.
- 7. Intra-ocular lens according to claim 1, wherein said polysiloxane comprises a (co)polymer derived from a (co)polymerization reaction between a high refractive index siloxane monomer and a cyclic co-monomer or co-monomers selected from the group consisting of tetravinyl tetramethyl cyclo tetrasiloxane, trivinyl trimethyl cyclo trisiloxane octamethyl cyclo tetrasiloxane, hexamethyl cyclo trisiloxane, trimethyl triphenyl cyclo trisiloxane, tetramethyl tetraphenyl cyclo tetrasiloxane, trifluoropropyl methyl cyclo trisiloxane, hexaphenyl cyclo trisiloxane and octaphenyl cyclo tetrasiloxane or (co)polymers derived from these cyclic (co)monomers.
- 8. Intra-ocular lens, comprising a co-polymer according to Formula I,
- 9. Intra-ocular lens according to claim 8, wherein R2 is a triphenyl silylethyl radical.
- 10. Intra-ocular lens according to claim 8, wherein R1 is vinyl or hydride; and R3 is a methyl radical.
- 11. High refractive index siloxane (co)polymer, comprising a clustered configuration of refractive index modifying groups chemically bonded to the polysiloxane backbone via an alkanediyl-bridge such that one alkanediyl-bridge binds at least two refractive index modifying groups to said backbone.
- 12. (Co)polymer according to claim 11, wherein the refractive index modifying groups are independently selected from the group consisting of cyclic, straight chain and branched chain hydrocarbon moieties.
- 13. (Co)polymer according to claim 11, wherein the refractive index modifying groups are independently selected from the group consisting of aromatic groups, aryl groups, arylalkyl groups, cycloalkyl groups and branched alkyl groups.
- 14. (Co)polymer according to claim 13, wherein the refractive index modifying groups are phenyl groups.
- 15. (Co)polymer according to any of the claim 11, wherein the alkanediyl-bridge is an ethanediyl bridge.
- 16. (Co)polymer according to any of the claim 11, wherein the clustered configuration of refractive index modifying groups comprises a central silicon atom.
- 17. Co-polymer according to Formula I:
- 18. Co-polymer according to claim 17, wherein R2 is a triphenyl silylethyl radical.
- 19. Co-polymer according to claim 17, wherein R1 is vinyl or hydride; and R3 is a methyl radical.
- 20. Polysiloxane (co)polymer, obtainable by chemically bonding a clustered configuration of refractive index modifying groups via an alkanediyl-bridge to the polysiloxane backbone of a polysiloxane (co)polymer such that one alkanediyl-bridge binds at least two refractive index modifying groups to said backbone.
- 21. Polysiloxane (co)polymer, obtainable by chemically bonding a clustered configuration of refractive index modifying groups via an alkanediyl-bridge to the polysiloxane backbone of a polysiloxane (co)polymer such that one alkanediyl-bridge binds at least two refractive index modifying groups to said backbone, and co-polymerizing the thus obtained polysiloxane (co)polymer with other polysiloxanes or cyclosiloxanes.
- 22. (Co)polymer according to claim 20, wherein the refractive index modifying groups are derived from triphenylsilane.
- 23. (Co)polymer according to any one of the claim 20 that is essentially non-crosslinked.
- 24. Polysiloxane (co)polymer according to any of the claim 11, further comprising an additive, such as an UV-blocking agent, a dye or pigment and/or a cross-linking inhibitor.
- 25. Monomeric cyclosiloxane comprising a clustered configuration of refractive index modifying groups chemically bonded to the siloxane backbone via an alkanediyl-bridge such that one alkanediyl-bridge binds at least two refractive index modifying groups to said backbone.
- 26. Method for preparing a high refractive index polysiloxane (co)polymer comprising the steps of:
a) chemically modifying a cyclic siloxane by performing an addition reaction in the presence of an addition reaction catalyst which reaction links a clustered configuration of refractive index modifying groups to the siloxane backbone of said cyclic siloxane via an alkanediyl-bridge such that at least two of said refractive index modifying groups are bound to said backbone of said cyclic siloxane via a single alkanediyl-bridge; and b) facilitating subsequent (co)polymerization of the resulting reaction products thereby obtaining the high refractive index polysiloxane (co)polymer.
- 27. Method for preparing a high refractive index polysiloxane (co)polymer according to claim 26, comprising chemically modifying a cyclic siloxane of
- 28. Method for preparing a high refractive index polysiloxane (co)polymer according to claim 26, comprising chemically modifying a cyclic siloxane of Formula II:
- 29. Method according to any of the claim 26, wherein said cyclic siloxane is a cyclic tetrasiloxane.
- 30. Method according to claim 29, wherein said cyclic tetrasiloxane is reacted with a triphenylsilane or triphenyl vinylsilane.
- 31. Method for preparing a high refractive index polysiloxane (co)polymer, comprising reacting a (co)polymer according to claim 11 with a cyclic siloxane co-monomer or a polysiloxane in the presence of a (co)polymerization catalyst.
- 32. Method for preparing a high refractive index polysiloxane (co)polymer, wherein a high refractive index polysiloxane (co)polymer, obtained by a method according to claim 26, is co-polymerized with a cyclic siloxane co-monomer or with a polysiloxane.
- 33. Method according to claim 31, wherein said cyclic siloxane is selected from the group consisting of tetravinyl tetramethyl cyclo tetrasiloxane, trivinyl trimethyl cyclo trisiloxane octamethyl cyclo tetrasiloxane, hexamethyl cyclo trisiloxane, trimethyl triphenyl cyclo trisiloxane, tetramethyl tetraphenyl cyclo tetrasiloxane, trifluoropropyl methyl cyclo trisiloxane, hexaphenyl cyclo trisiloxane and octaphenyl cyclo tetrasiloxane or (co)polymers derived from these cyclic (co)monomers.
- 34. Method for preparing a high refractive index polysiloxane (co)polymer, comprising the step of chemically modifying a polysiloxane (co)polymer by performing an addition reaction in the presence of an addition reaction catalyst which reaction links a clustered configuration of refractive index modifying groups to the siloxane backbone of said (co)polymer via an alkanediyl-bridge such that at least two of said refractive index modifying groups are bound to said backbone of said (co)polymer via a single alkanediyl-bridge.
- 35. Method for preparing a high refractive index polysiloxane (co)polymer, comprising the step of chemically modifying a polysiloxane (co)polymer by performing an addition reaction in the presence of an addition reaction catalyst which reaction links a clustered configuration of refractive index modifying groups to the siloxane backbone of said (co)polymer via an alkanediyl-bridge such that at least two of said refractive index modifying groups are bound to said backbone of said (co)polymer via a single alkanediyl-bridge and co-polymerizing the thus obtained modified polysiloxane homo-polymer with other polysiloxanes or cyclosiloxanes.
- 36. Method according to claim 34, wherein said clustered configuration of refractive index modifying groups is a triphenylsilane.
- 37. Method according to claim 34, wherein said high refractive index polysiloxane (co)polymer is essentially non-crosslinked.
- 38. Method for preparing an intra-ocular lens, comprising processing a (co)polymer according to claim 11 into an intra-ocular lens, said processing comprising the step of cross-linking said (co)polymer.
- 39. Method according to claim 38, wherein said processing comprises the step of injection molding prior to completing the cross-linking of said (co)polymer.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of priority from U.S. Provisional Application No. 60/355,070 filed Feb. 8, 2002, the contents of which are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60355070 |
Feb 2002 |
US |