Claims
- 1. An optical recording process comprising selectively irradiating an optical recording medium comprising a substrate and recording layer with a recording light beam to form optically detectable pits on said recording layer, thereby recording information, said recording layer having a thickness of 10 .mu. or less and containing at least 1% by weight of at least one of the compounds represented by Formulas (1), (2), (9) and (10): ##STR188## wherein R.sub.11 and R.sub.12 are each alkyl, substituted alkyl, cyclic alkyl, alkenyl, aralkyl, substituted aralkyl, aryl, or substituted aryl; Z.sub.11 and Z.sub.12 are each nonmetal atomic groups necessary to complete a substituted or unsubstituted heterocyclic ring; a and b are each 0 or 1; M.sup.+ represents a cation; and X.sup.- is an anion; ##STR189## wherein R.sub.11 and R.sub.12 reach alkyl, substituted alkyl, cyclic alkyl, alkenyl, aralkyl, substituted aralkyl, aryl, or substituted aryl; Z.sub.11 and Z.sub.12 are each nonmetal atomic groups necessary to complete a substituted or unsubstituted heterocyclic ring; a and b are each 0 to 1; ##STR190## wherein A.sub.3 is ##STR191## Z.sub.93 and Z.sub.94 are each sulfur, oxygen, or selenium; Z.sub.91 is an atomic group necessary to complete a pyrylium, thiapyrylium, selenapyrylium, benzopyrylium, naphthothiapyryulium or naphthoselenapyrylium ring which is substituted or unsubstituted; Z.sub.92 is an atomic group necessary to complete a pyrane, thiapyrane, selenapyrane, benzopyrane, benzothiapyrane, naphthopyrane, naphthothiapyrane or naphthoseleneapyrane ring which is substituted or unsubstituted R.sub.91, R.sub.92, R.sub.93, R.sub.94 are each alkyl, alkoxyl, or a substituted or unsubstituted aryl, styryl 4-phenyl-1, 3-butadienyl, or heterocyclic residue, where R.sub.91 coupled with R.sub.92 and R.sub.93 coupled with R.sub.94 can each form a substituted or unsubstituted benzene ring; and v and w are each 1 or 2; ##STR192## wherein R.sub.21 and R.sub.22 each represent alkyl or R.sub.21 and R.sub.22 together with the nitrogen atom to which they are attached from a benzene ring; R.sub.23, R.sub.24, R.sub.25 and R.sub.26 are each hydrogen; halogen, alkyl alkoxy, or hydroxyl, where combinations of R.sub.24 and combination of R.sub.25 and R.sub.26 can each form a benzene ring.
- 2. The recording process of claim 1, including employing a laser as said recording light beam.
- 3. The recording process of claim 2, including employing as said recording light beam a xenon flash.
- 4. The recording process of claim 1, wherein the recording medium is scanned with a recording light beam along a track.
- 5. The recording process of claim 1, wherein the recording light beam irradiates the recording layer side.
- 6. The recording process of claim 1, wherein the recording light beam irradiates the substrate side.
- 7. The recording process of claim 1, including employing a recording layer containing a binder and at least one of the compounds represented by the Formulas (1), (2), (9) and (10).
- 8. The recording process of claim 7, including employing as said binder at least one member selected from the group consisting of cellulose esters, cellulose ethers, vinyl type resins and copolymers thereof, acrylic resins, polyester resins, polycarbonates and copolyesters thereof, polyarylates, polymides, epoxy resins, phenolic resins and polyolefins.
- 9. The recording process of claim 7, including employing a cellulose ester as said binder.
- 10. The recording process of claim 7, including employing nitrocellulose as said binder.
- 11. The recording process of claim 7, including employing an organic thin film having a dry thickness of 2 .mu. or less as said recording layer.
- 12. The recording process of claim 1, including employing a reflecting layer between said substrate and said recording layer.
- 13. The recording process of claim 12 including employing a vapor-deposited film or aluminum silver or chromium as said reflecting layer.
- 14. The recording process of claim 12, including employing a laminate film or aluminum, silver or chromium as said reflecting layer.
- 15. The recording process of claim 1, including employing the step of forming the recording layer by vapor depositing a compound represented by one of the Formulas (1), (2), (9) and (10).
- 16. The recording process of claim 1, including employing optically-detectable pits.
- 17. The optical recording process according to claim 1, wherein the content of the at least one compound in the recording layer is from 20 to 70% by weight.
- 18. The process of claim 1 including the step of illuminating said recording layer with a reading light to detect optical variation of said pits, thereby reading out said recorded information.
- 19. The process of claim 18, wherein said recorded information is read out by detecting the reflection of said reading light from said recording layer.
- 20. An optical recording process comprising: selectively irradiating an optical recording medium comprising a substrate and recording layer with a recording light beam to form optically detectable pits on said recording layer thereby recording information, said recording layer having a thickness of 10 microns or less and containing at least 1% by weight of at least one of the compounds represented by Formula 2: ##STR193## wherein R.sub.11 and R.sub.12 are each alkyl, substituted alkyl, cyclic alkyl, alkenyl, aralkyl, substituted aralkyl, aryl, or substituted aryl; Z.sub.11 and Z.sub.12 are each nonmetal atomic groups necessary to complete a substituted or unsubstituted heterocyclic ring and a and b are each 0 to 1.
- 21. An optical recording process comprising: selectively irradiating an optical recording medium comprising a substrate and a recording layer with a recording light beam to form optically detectable pits on said recording layer thereby recording information, said recording layer having a thickness of 10 microns or less and containing at least 1% by weight of at least one of the compounds represented by Formula 1: ##STR194## wherein R.sub.11 and R.sub.12 are each alkyl, substituted alkyl, cyclic alkyl, alkenyl, aralkyl, substituted aralkyl, aryl, or substituted aryl; Z.sub.11 and Z.sub.12 are each nonmetal atomic groups necessary to complete a substituted or unsubstituted heterocyclic ring; a and b are each 0 or 1; M.sup.+ represents a cation and X.sup.- is an anion.
- 22. An optical recording process comprising: selectively irradiating an optical recording medium comprising a substrate and a recording layer with a recording light beam to form optically detectable pits on said recording layer thereby recording information, said recording layer having a thickness of 10 microns or less and containing at least 1% by weight of at least one of the compounds represented by Formula 9: ##STR195## wherein A.sub.3 is ##STR196## Z.sub.93 and Z.sub.94 are each sulfur, oxygen or selenium; Z.sub.91 is an atomic group necessary to complete a pyrylium, thiapyrylium, selenapyrylium, benzopyrylium, naphthothiapyrylium or naphthoselenepyrylium ring which is substituted or unsubstituted; Z.sub.92 is an atomic group necessary to complete z pyrane, thiapyrane, selenapyrane, benzopyrane, benzothiapyrane, naphthopyrane, naphthothiapyrane or napthoseleneapyrane ring which is substituted or unsubstituted R.sub.91, R.sub.92, R.sub.93, R.sub.94 are each alkyl, alkoxy, or a substituted or unsubstited aryl, styryl, 4-phenyl-1, 3-butyadienyl, or heterocyclic residue, where R.sub.91 coupled with R.sub.92 and R.sub.93 coupled with R.sub.94 can each form a substituted or unsubstituted benzene ring; and v and w are each 1 or 2.
- 23. An optical recording process comprising: selectively irradiating an optical recording medium comprising a substrate and a recording layer with a recording light beam to form optically detectable pits on said recording layer thereby recording information, said recording layer having a thickness of 10 microns or less and containing at least 1% by weight of at least one of the compounds represented by Formula 10: ##STR197## wherein R.sub.21 and R.sub.22 each represent alkyl or R.sub.21 and R.sub.22 together with the nitrogen atom to which they are attached from a benzene ring; R.sub.23, R.sub.24, R.sub.25 and R.sub.26 are each hydrogen; halogen, alkyl alkoxy, or hydroxyl, where combinations of R.sub.24 and combinations of R.sub.25 and R.sub.26 can each form a benzene ring.
Priority Claims (9)
Number |
Date |
Country |
Kind |
57-56963 |
Apr 1982 |
JPX |
|
57-64926 |
Apr 1982 |
JPX |
|
57-64927 |
Apr 1982 |
JPX |
|
57-64928 |
Apr 1982 |
JPX |
|
57-102579 |
Jun 1982 |
JPX |
|
57-102580 |
Jun 1982 |
JPX |
|
103603 |
Jun 1982 |
JPX |
|
57-103604 |
Jun 1982 |
JPX |
|
57-123144 |
Jul 1982 |
JPX |
|
Parent Case Info
This application is a division of application Ser. No. 07/512,587, filed Apr. 24,1990, now U.S. Pat. No. 5,678,127, which in turn, is a division of application Ser. No. 378,491, filed Jul. 11, 1989, now abandoned; which in turn, is a continuation of application Ser. No. 053,563, filed May 21, 1987, now abandoned; which in turn, is a continuation of application Ser. No. 756,570, filed Jul. 18, 1985, now abandoned; which in turn, is a continuation of application Ser. No. 481,741, filed Apr. 4, 1983, now abandoned.
US Referenced Citations (7)
Divisions (2)
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Number |
Date |
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Parent |
512587 |
Apr 1989 |
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Parent |
378491 |
Jul 1989 |
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Continuations (3)
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Number |
Date |
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Parent |
53563 |
May 1987 |
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Parent |
756570 |
Jul 1985 |
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Parent |
481741 |
Apr 1983 |
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