Claims
- 1. A storage medium for data, the storage medium comprising:
a) a substrate, a physical portion of which comprises at least one polyimide, and b) at least one data layer on the substrate; the at least one polyimide comprising structural units of the formula: 12wherein “A” comprises structural units of the formulae: 13or mixtures of the foregoing structural units; wherein “D” is a divalent aromatic group, R3 and R10-R12 are independently selected from hydrogen, halogen, and C1-C6 alkyl groups; “q” is an integer having a value of 1 up to the number of positions available on the aromatic ring for substitution; “W” is a linking group; and wherein B comprises a divalent organic radical selected from aromatic hydrocarbon radicals having 6 to about 30 carbon atoms and substituted derivatives thereof.
- 2. The data storage medium of claim 1, wherein “D” has the formula:
- 3. The polyimide composition of claim 2, wherein “E” is a moiety selected from the group consisting of cyclopentylidene, cyclohexylidene, 3,3,5-trimethylcyclohexylidene, methylcyclohexylidene, neopentylidene, cyclododecylidene, adamantylidene, isopropylidene, bicyclo[2.2.1]hept-2-ylidene, 1,7,7-trimethylbicyclo[2.2.1]hept-2-ylidene, and C═CZ2, wherein each Z is hydrogen, chlorine, or bromine, subject to the provision that at least one Z is chlorine or bromine; and mixtures of the foregoing moieties.
- 4. The polyimide composition of claim 1, wherein “W” is selected from the group consisting of a covalent bond, oxygen, sulfur, sulfoxide, sulfone, silicon, carbonyl, or hexafluoro isopropylidene.
- 5. The data storage medium of claim 1, wherein “A” comprises structural units derived from 2,2-bis[4-(3,4-dicarboxyphenoxy)phenyl]propane dianhydride; 2,2-bis[4-(2,3-dicarboxyphenoxy)phenyl]propane dianhydride; the mixed dianhydride 2-[4-(3,4-dicarboxyphenoxy)phenyl]-2-[4-(2,3-dicarboxyphenoxy)phenyl]propane dianhydride, 3,4,3′,4′-benzophenonetetracarboxylic acid dianhydride, 3,3′,4,4′-oxydiphthalic anhydride, 2,3,2′,3′-biphenyltetracarboxylic acid dianhydride, pyromellitic dianhydride, 3,4,3′,4′-diphenylsulfonetetracarboxylic acid dianhydride, 4,4′-bis(3,4-dicarboxyphenoxy)diphenyl sulfide dianhydride, 1,4-bis(3,4-dicarboxyphenoxy)benzene dianhydride, 4,4′-bis(3,4-dicarboxyphenoxy)diphenyl ether dianhydride, 2,2-bis(3,4-dicarboxyphenyl)hexafluoropropane dianhydride or mixtures of the foregoing dianhydrides.
- 6. The data storage medium of claim 1, wherein “A” is selected from the group consisting of:
- 7. The data storage medium of claim 1, wherein “B” is selected from the group consisting of substituted and unsubstituted phenylene groups.
- 8. The data storage medium of claim 1, wherein “B” comprises structural units derived from at least one diamine selected from the group consisting of 1,3-phenylenediamine, 1,4-phenylenediamine, 2-methyl-1,3-phenylenediamine, 4-methyl-1,3-phenylenediamine, 2,4,6-trimethyl-1,3-phenylenediamine, 2,6-diethyl-4-methyl-1,3-phenylenediamine, 3,6-diethyl-2-methyl-1,3-phenylenediamine, 2,5-dimethyl-1,4-phenylenediamine, 2,3,5,6-tetramethyl-1,4-phenylenediamine, 3,5′-dimethylbenzidene, 2,2′,6,6′-tetramethylbenzidene, 3,5′-dimethoxybenzidene, 4,4′-diaminodiphenyl ether, 4,4′-diaminodiphenyl methane, fluorinated alkyl analogs of said diamines, 2-trifluoromethyl-1,4-phenylenediamine and mixtures thereof.
- 9. The data storage medium of claim 1, wherein “B” comprises structural units derived from at least two diamines wherein at least about 45% of at least one diamine is selected from the group consisting of 1,3-phenylenediamine, 1,4-phenylenediamine, 2-methyl-1,3-phenylenediamine, 4-methyl-1,3-phenylenediamine, 2,4,6-trimethyl-1,3-phenylenediamine, 2,6-diethyl-4-methyl-1,3-phenylenediamine, 3,6-diethyl-2-methyl-1,3-phenylenediamine, 2,5-dimethyl-1,4-phenylenediamine, 2,3,5,6-tetramethyl-1,4-phenylenediamine, 3,5′-dimethylbenzidene, 2,2′,6,6′-tetramethylbenzidene, 3,5′-dimethoxybenzidene, 4,4′-diaminodiphenyl ether, 4,4′-diaminodiphenyl methane and combinations thereof, based on the total weight of structural units derived from diamine.
- 10. The data storage medium of claim 1, wherein “k” is an integer having a value from 1 to about 50.
- 11. The data storage medium of claim 1, wherein said polyimide composition is a blend comprising a second polyimide wherein the said blend is a miscible blend.
- 12. The data storage medium of claim 1, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.019 at a temperature of about 25° C. at a frequency of about 1.6 hertz.
- 13. The data storage medium of claim 1, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.022 at a temperature of about 50° C. at a frequency of about 1.6 hertz.
- 14. The data storage medium of claim 1, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.025 at a temperature of about 100° C. at a frequency of about 1.6 hertz.
- 15. The data storage medium of claim 1, wherein said polyetherimide composition has a mechanical damping coefficient of at least about 0.05 at a temperature of above about 130° C. at a frequency of about 1.6 hertz.
- 16. The data storage medium of claim 1, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.019 at a temperature in a range of about 25° C. to about 100° C. at a frequency of about 1.6 hertz.
- 17. The data storage medium of claim 1, wherein said polyimide composition has a glass transition temperature in a range of about 150° C. to about 350° C.
- 18. The data storage medium of claim 1, wherein said polyimide composition has a glass transition temperature in a range of about 170° C. to about 300° C.
- 19. The data storage medium of claim 1, wherein said polyimide composition has a glass transition temperature in a range of about 180° C. to about 280° C.
- 20. A storage medium for data, the storage medium comprising:
a) a substrate, a physical portion of which comprises at least one polyimide, and b) at least one data layer on the substrate; the at least one polyimide comprising structural units of the formula: 16wherein “A” comprises structural units selected from the group consisting of: 17and mixtures thereof; and B comprises a divalent organic radical selected from aromatic hydrocarbon radicals having 6 to about 30 carbon atoms and substituted derivatives thereof.
- 21. The data storage medium of claim 20, wherein “B” comprises structural units derived from at least one diamine selected from the group consisting of 1,3-phenylenediamine, 1,4-phenylenediamine, 2-methyl-1,3-phenylenediamine, 4-methyl-1,3-phenylenediamine, 2,4,6-trimethyl-1,3-phenylenediamine, 2,6-diethyl-4-methyl-1,3-phenylenediamine, 3,6-diethyl-2-methyl-1,3-phenylenediamine, 2,5-dimethyl-1,4-phenylenediamine, 2,3,5,6-tetramethyl-1,4-phenylenediamine, 3,5′-dimethylbenzidene, 2,2′,6,6′-tetramethylbenzidene, 3,5′-dimethoxybenzidene, 4,4′-diaminodiphenyl ether, 4,4′-diaminodiphenyl methane, fluorinated alkyl analogs of said diamines-2-trifluoromethyl-1,4-phenylenediamine and mixtures thereof.
- 22. The data storage medium of claim 20, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.019 at a temperature of about 25° C. at a frequency of about 1.6 hertz.
- 23. The data storage medium of claim 20, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.022 at a temperature of above about 50° C. at a frequency of about 1.6 hertz.
- 24. The data storage medium of claim 20, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.025 at a temperature of above about 100° C. at a frequency of about 1.6 hertz.
- 25. The data storage medium of claim 20, wherein said polyetherimide composition has a mechanical damping coefficient of at least about 0.05 at a temperature of above about 130° C. at a frequency of about 1.6 hertz.
- 26. The data storage medium of claim 20, wherein said polyimide composition has a mechanical damping coefficient of at least about 0.019 at a temperature in a range of about 25° C. to about 100° C. at a frequency of about 1.6 hertz.
- 27. The data storage medium of claim 20, wherein “B” comprises structural units derived from at least two diamines wherein at least about 45% of at least one diamine is selected from the group consisting of 1,3-phenylenediamine, 1,4-phenylenediamine, 2-methyl-1,3-phenylenediamine, 4-methyl-1,3-phenylenediamine, 2,4,6-trimethyl-1,3-phenylenediamine, 2,6-diethyl-4-methyl-1,3-phenylenediamine, 3,6-diethyl-2-methyl-1,3-phenylenediamine, 2,5-dimethyl-1,4-phenylenediamine, 2,3,5,6-tetramethyl-1,4-phenylenediamine, 3,5′-dimethylbenzidene, 2,2′,6,6′-tetramethylbenzidene, 3,5′-dimethoxybenzidene, 4,4′-diaminodiphenyl ether, 4,4′-diaminodiphenyl methane and combinations thereof, based on the total weight of structural units derived from diamine.
- 28. The data storage medium of claim 20, wherein said polyimide composition is a blend comprising a second polyimide wherein the said blend is a miscible blend.
- 29. The data storage medium of claim 20, wherein said polyimide composition has a glass transition temperature in a range of about 150° C. to about 350° C.
- 30. The data storage medium of claim 20, wherein said polyimide composition has a glass transition temperature in a range of about 170° C. to about 300° C.
- 31. The data storage medium of claim 20, wherein said polyimide composition has a glass transition temperature in a range of about 180° C. to about 280° C.
FEDERAL RESEARCH STATEMENT
[0001] This invention was made with Government support under contract number 70NANB1H3022 awarded by National Institute of Standards and Technology. The Government has certain rights in the invention.