Claims
- 1. A cross-linked gas permeable membrane useful in optical gas sensors for measuring O.sub.2 or CO.sub.2 in a fluid, comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises a perfluorinated urethane polymer precursor cross-linked with a cross-linking agent, and further wherein the precursor has the structural formula ##STR5## wherein Ar is a monocyclic aromatic moiety and X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof.
- 2. The membrane of claim 1, wherein the cross-linking agent is water.
- 3. The membrane of claim 1, wherein the polymeric matrix comprises approximately 95 wt. % to 99.5 wt. % perfluorinated polyurethane polymer precursor and approximately 0.5 wt. % to 5 wt. % cross-linking agent.
- 4. The membrane of claim 1, wherein the gas-sensitive indicator is selected from the group consisting of fluorescein, carboxyfluorescein, seminaphthorhodafluor, seminaphthofluorescein, naphthofluorescein, hydroxypyrene trisulfonic acid and dichlorofluorescein.
- 5. The membrane of claim 1, wherein the cross-linking agent is a diol.
- 6. The membrane of claim 5, wherein the diol is selected from the group consisting of bisphenol A and hexafluorobisphenol A.
- 7. The membrane of claim 1, wherein the gas-sensitive indicator is selected from the group consisting of complexes of ruthenium (II), osmium (II), iridium (III), rhodium, rhenium, and chromium (III) with one of 2,2'-bipyridine, 1,10-phenanthroline, 4,7-diphenyl(1,10-phenanthroline), 4,7-dimethyl-1,10-phenanthroline, 4,7-disulfonated-diphenyl-1,10-phenanthroline, 2,2'-bi-2-thiazoline, 2,2'-bithiazole, 5-bromo-1,10-phenanthroline, and 5-chloro-1,10-phenanthroline, complexes of VO (II), Cu (II), platinum (II), and zinc (II) with one of porphin etioporphorin tetraphenylporphyrin, mesoporphyrin IX dimethylester, protoporphyrin IX dimethylester and octaethylporphyrin, and combinations thereof.
- 8. The membrane of claim 7, wherein the gas-sensitive indicator is physically entrapped within the polymer matrix.
- 9. The membrane of claim 7, wherein the gas-sensitive indicator is covalently bound to the polymer matrix.
- 10. A cross-linked gas permeable membrane useful in optical gas sensors for measuring O.sub.2 or CO.sub.2 in a fluid, comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises a perfluorinated urethane polymer precursor having the structural formula ##STR6## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with a photoinitiator in the presence of radiation.
- 11. The membrane of claim 10, wherein the gas-sensitive indicator is selected from the group consisting of complexes of ruthenium (II), osmium (II), iridium (III), rhodium, rhenium, and chromium (III) with one of 2,2'-bipyridine, 1,10-phenanthroline, 4,7-diphenyl(1,10-phenanthroline), 4,7-dimethyl-1,10-phenanthroline, 4,7-disulfonated-diphenyl-1,10-phenanthroline, 2,2'-bi-2-thiazoline, 2,2'-bithiazole, 5-bromo-1,10-phenanthroline, and 5-chloro-1,10-phenanthroline, complexes of VO (II), Cu (II), platinum (II), and zinc (II) with one of porphin etioporphorin tetraphenylporphyrin, mesoporphyrin IX dimethylester, protoporphyrin IX dimethylester and octaethylporphyrin, and combinations thereof.
- 12. The membrane of claim 11, wherein the gas-sensitive indicator is physically entrapped within the polymer matrix.
- 13. The membrane of claim 11, wherein the gas-sensitive indicator is covalently bound to the polymer matrix.
- 14. A cross-linked gas permeable membrane useful in optical gas sensors for measuring O.sub.2 or CO.sub.2 in a fluid, comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises an epoxy-terminated precursor having the structural formula ##STR7## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with a photoinitiator in the presence of radiation.
- 15. The membrane of claim 14, wherein the gas-sensitive indicator is selected from the group consisting of fluorescein, carboxyfluorescein, seminaphthorhodafluor, seminaphthofluorescein, naphthofluorescein, hydroxypyrene trisulfonic acid and dichlorofluorescein.
- 16. The membrane of claim 15, wherein the gas-sensitive indicator is physically entrapped within the polymer matrix.
- 17. The membrane of claim 15, wherein the gas-sensitive indicator is covalently bound to the polymer matrix.
- 18. An optical gas sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising:
- an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from the distal end portion, and wherein the distal end portion has in optical communication therewith a gas sensor means comprising
- a cross-linked gas permeable membrane comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises a perfluorinated urethane polymer precursor cross-linked with a cross-linking agent, and further wherein the precursor has the structural formula ##STR8## wherein Ar is a monocyclic aromatic moiety and X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof.
- 19. The optical sensor of claim 18, wherein the cross-linking agent is water.
- 20. The optical sensor of claim 18, wherein the sensor is an O.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of complexes of ruthenium (II), osmium (II), iridium (III), rhodium, rhenium, and chromium (III) with one of 2,2'-bipyridine, 1,10-phenanthroline, 4,7-diphenyl(1,10-phenanthroline), 4,7-dimethyl-1,10-phenanthroline, 4,7-disulfonated-diphenyl-1,10-phenanthroline, 2,2'-bi-2-thiazoline, 2,2'-bithiazole, 5-bromo-1,10-phenanthroline, and 5-chloro-1,10-phenanthroline, complexes of VO (II), Cu (II), platinum (II), and zinc (II) with one of porphin etioporphorin tetraphenylporphyrin, mesoporphyrin IX dimethylester, protoporphyrin IX dimethylester and octaethylporphyrin, and combinations thereof.
- 21. The optical sensor of claim 14, wherein the sensor is a CO.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of fluorescein, carboxyfluorescein, seminaphthorhodafluor, seminaphthofluorescein, naphthofluorescein, hydroxypyrene trisulfonic acid and dichlorofluorescein.
- 22. The optical sensor of claim 18, wherein the cross-linking agent is a diol.
- 23. The optical sensor of claim 22, wherein the diol is selected from the group consisting of bisphenol A or hexafluorobisphenol A.
- 24. An optical gas sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising:
- an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from the distal end portion, and wherein the distal end portion has in optical communication therewith a gas sensor means comprising
- a cross-linked gas permeable membrane comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises a perfluorinated urethane polymer precursor having the structural formula ##STR9## wherein Ar is a monocyclic aromatic moiety and X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with a photoinitiator in the presence of radiation.
- 25. The optical sensor of claim 24, wherein the sensor is an O.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of complexes of ruthenium (II), osmium (II), iridium (III), rhodium, rhenium, and chromium (III) with one of 2,2'-bipyridine, 1,10-phenanthroline, 4,7-diphenyl(1,10-phenanthroline), 4,7-dimethyl-1,10-phenanthroline, 4,7-disulfonated-diphenyl-1,10-phenanthroline, 2,2'-bi-2-thiazoline, 2,2'-bithiazole, 5-bromo-1,10-phenanthroline, and 5-chloro-1,10-phenanthroline, complexes of VO (II), Cu (II), platinum (II), and zinc (II) with one of porphin etioporphorin tetraphenylporphyrin, mesoporphyrin IX dimethylester, protoporphyrin IX dimethylester and octaethylporphyrin, and combinations thereof.
- 26. The optical sensor of claim 24, wherein the sensor is a CO.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of fluorescein, carboxyfluorescein, seminaphthorhodafluor, seminaphthofluorescein, naphthofluorescein, hydroxypyrene trisulfonic acid and dichlorofluorescein.
- 27. An optical gas sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising:
- an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from the distal end portion, and wherein the distal end portion has in optical communication therewith a gas sensor means comprising
- a cross-linked gas permeable membrane comprising a polymeric matrix of a cured perfluorinated urethane polymer, the matrix having a gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises an epoxy-terminated precursor having the structural formula ##STR10## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with photoinitiator in the presence of radiation.
- 28. The optical sensor of claim 27, wherein the sensor is an O.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of complexes of ruthenium (II), osmium (II), iridium (III), rhodium, rhenium, and chromium (III) with one of 2,2'-bipyridine, 1,10-phenanthroline, 4,7-diphenyl(1,10-phenanthroline), 4,7-dimethyl-1,10-phenanthroline, 4,7-disulfonated-diphenyl-1,10-phenanthroline, 2,2'-bi-2-thiazoline, 2,2'-bithiazole, 5-bromo-1,10-phenanthroline, and 5-chloro-1,10-phenanthroline, complexes of VO (II), Cu (II), platinum (II), and zinc (II) with porphin etioporphorin tetraphenylporphyrin, mesoporphyrin IX dimethylester, protoporphyrin IX dimethylester and octaethylporphyrin, and combinations thereof.
- 29. The optical sensor of claim 27, wherein the sensor is a CO.sub.2 sensor and the gas-sensitive indicator is selected from the group consisting of fluorescein, carboxyfluorescein, seminaphthorhodafluor, seminaphthofluorescein, naphthofluorescein, hydroxypyrene trisulfonic acid and dichlorofluorescein.
- 30. A method for making an optical gas sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising the steps of:
- (a) providing an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from said distal end portion;
- (b) coating said distal end portion with a solution containing a photocurable polymeric precursor, which precursor has the structural formula ##STR11## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and a gas-sensitive indicator component; and
- (c) effecting cross-linking of the precursor by irradiating the distal end portion through the optical waveguide using radiation of a wavelength effective to cure the precursor.
- 31. A method for making an optical sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising the steps of:
- (a) providing an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from said distal end portion;
- (b) coating said distal end portion with a solution containing a perfluorinated urethane polymer precursor and a gas-sensitive indicator component, to provide a precursor-coated tip; and
- (c) effecting cross-linking of said precursor, thereby providing at the distal end portion a gas sensor means comprising a cross-linked gas permeable membrane of a cured perfluorinated urethane polymer, the membrane having said gas-sensitive indicator component incorporated therein, wherein the cured perfluorinated urethane polymer comprises said perfluorinated urethane polymer precursor cross-linked with a cross-linking agent, and further wherein the precursor has the structural formula ##STR12## wherein Ar is a monocyclic aromatic moiety and X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof.
- 32. The method of claim 31, wherein cross-linking is carried out by contacting the precursor-coated tip with a cross-linking agent.
- 33. A method for making an optical gas sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising the steps of:
- (a) providing an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from said distal end portion;
- (b) coating said distal end portion with a solution containing a photocurable polymeric precursor, which precursor having the structural formula ##STR13## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and a gas-sensitive indicator component; and
- (c) effecting cross-linking of the precursor by irradiating the distal end portion through the optical waveguide using radiation of a wavelength effective to cure the precursor.
- 34. A method for making an optical sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising the steps of:
- (a) providing an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from said distal end portion;
- (b) coating said distal end portion with a solution containing a perfluorinated urethane polymer precursor and a gas-sensitive indicator component, to provide a precursor-coated tip; and
- (c) effecting cross-linking of said precursor, thereby providing at the distal end portion a gas sensor means comprising a cross-linked gas permeable membrane of a cured perfluorinated urethane polymer, the membrane having said gas-sensitive indicator component incorporated therein, wherein said perfluorinated urethane polymer precursor has the structural formula ##STR14## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with a photoinitiator in the presence of radiation.
- 35. The method of claim 34, wherein cross-linking is carried out by irradiating the distal end portion of the optical waveguide.
- 36. The method of claim 34, wherein the irradiating is effected through the optical waveguide.
- 37. A method for making an optical sensor for measuring O.sub.2 or CO.sub.2 in a fluid, comprising the steps of:
- (a) providing an optical waveguide having a distal end portion for monitoring a gas component within a fluid, and a proximal end portion for communication with means for receiving a signal from said distal end portion;
- (b) coating said distal end portion with a solution containing a perfluorinated urethane polymer precursor and a gas-sensitive indicator component, to provide a precursor-coated tip; and
- (c) effecting cross-linking of said precursor, thereby providing at the distal end portion a gas sensor means comprising a cross-linked gas permeable membrane of a cured perfluorinated urethane polymer, the membrane having said gas-sensitive indicator component incorporated therein, wherein the precursor is an epoxy-terminated precursor having the structural formula ##STR15## wherein Ar is a monocyclic aromatic moiety, X is a perfluorinated polyether linkage containing approximately 2 to 100 recurring perfluorinated mer units having the structure --CF.sub.2 O), --CF.sub.2 CF.sub.2 O), or combinations thereof, and n is an integer in the range of 0 to 6 inclusive, and further wherein the precursor is cured with a photoinitiator in the presence of radiation.
- 38. The method of claim 37, wherein cross-linking is carried out by irradiating the distal end portion of the optical waveguide.
- 39. The method of claim 37, wherein the irradiating is effected through the optical waveguide.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of U.S. patent application Ser. No. 07/848,627, filed Mar. 9, 1992, now abandoned.
US Referenced Citations (13)
Foreign Referenced Citations (4)
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Continuation in Parts (1)
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Number |
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Parent |
848627 |
Mar 1992 |
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