Claims
- 1. A device for selectively converting photogenerated reagent precursors to photogenerated reagents comprising:
a) a substrate comprising at least one solid surface containing a plurality of spatially separated reaction sites; and b) an optical system operably linked to the substrate comprising a light source and a computer-controlled spatial optical modulator to form an irradiation pattern, wherein said optical system selectively irradiates a plurality of reaction sites.
- 2. The device of claim 1, wherein said spatial optical modulator is selected from the group consisting of a digital micromirror device, reflective liquid crystal display device, and transmissive liquid crystal display device.
- 3. The device of claim 2, wherein said digital micromirror device comprises a plurality of micromirrors.
- 4. The device of claim 3, wherein said micromirrors are individual rocking mirrors.
- 5. The device of claim 1, further comprising at least one filter in-line with said light source, wherein said filter is configured to generate a desired wavelength.
- 6. The device of claim 1, wherein said substrate is transparent.
- 7. The device of claim 1, further comprising a reagent manifold having one or more inlets and one or more outlets, said manifold configured to direct at least one reagent solution to said reaction site.
- 8. The device of claim 1, wherein said reaction sites are isolated reaction-wells.
- 9. The device of claim 1, further comprising a mechanism for controlling light intensity thereby controlling the generation of photogenerated reagents.
- 10. A device for selectively converting photogenerated reagent precursors to photogenerated reagents for effecting a chemical reaction comprising:
a) a substrate comprising at least one solid surface containing a plurality of spatially separated reaction sites, wherein said reaction sites comprise one or more reagents and contain a solution of at least one photogenerated reagent precursor; and b) an optical system operably linked to the substrate comprising a light source and a computer-controlled spatial optical modulator to form an irradiation pattern, which optical system selectively irradiates a plurality of reaction sites thereby converting the photogenerated reagent precursors to photogenerated reagents thereby effecting a chemical reaction.
- 11. The device of claim 10, wherein said spatial optical modulator is selected from the group consisting of digital micromirror device, reflective liquid crystal display device, and transmissive liquid crystal display device.
- 12. The device of claim 11, wherein said digital micromirror device comprises a plurality of micromirrors.
- 13. The device of claim 12, wherein said micromirrors are individual rocking mirrors.
- 14. The device of claim 10, further comprising at least one filter in-line with said light source, wherein said filter is configured to generate a desired wavelength.
- 15. The device of claim 10, wherein said substrate is transparent.
- 16. The device of claim 10, further comprising a reagent manifold having one or more inlets and one or more outlets, said manifold configured to direct at least one reagent solution to said reaction site.
- 17. The device of claim 10, wherein said reaction sites are isolated reaction-wells.
- 18. The device of claim 10, further comprising a mechanism for controlling light intensity thereby controlling the generation of photogenerated reagents.
- 19. A device for selectively converting photogenerated reagent precursors to photogenerated reagents for effecting deprotection of one or more initiating moieties comprising:
a) a substrate comprising at least one solid surface containing a plurality of spatially separated reaction sites, wherein said reaction sites comprise one or more initiating moieties and contain a solution of at least one photogenerated reagent precursor; and b) an optical system operably linked to the substrate comprising a light source and a computer-controlled spatial optical modulator to form an irradiation pattern, wherein said optical system selectively irradiates a plurality of reaction sites whereby said initiating moieties are deprotected by conversion of said photogenerated reagent precursors to photogenerated reagents.
- 20. The device of claim 19, wherein said spatial optical modulator is selected from the group consisting of digital micromirror device, reflective liquid crystal display device, and transmissive liquid crystal display device.
- 21. The device of claim 20, wherein said digital micromirror device comprises a plurality of micromirrors.
- 22. The device of claim 21, wherein said micromirrors are individual rocking mirrors.
- 23. The device of claim 19, further comprising at least one filter in-line with said light source, wherein said filter is configured to generate a desired wavelength.
- 24. The device of claim 19, wherein said substrate is transparent.
- 25. The device of claim 19, further comprising a reagent manifold having one or more inlets and one or more outlets, said manifold configured to direct at least one reagent solution to said reaction site.
- 26. The device of claim 19, wherein said reaction sites are isolated reaction-wells.
- 27. The device of claim 19, further comprising a mechanism for controlling light intensity thereby controlling the generation of photogenerated reagents.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/074,368, filed on Feb. 11, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60074368 |
Feb 1998 |
US |
Continuations (2)
|
Number |
Date |
Country |
Parent |
10157442 |
May 2002 |
US |
Child |
10309627 |
Dec 2002 |
US |
Parent |
09248093 |
Feb 1999 |
US |
Child |
10157442 |
May 2002 |
US |