Methods and apparatus for spectroscopic imaging of materials in an array
View Patent ↗A system for monitoring infrared absorption of each of a plurality of materials contained in an array has an infrared transparent substrate for the array of materials. An infrared radiation source irradiates the materials in the array with infrared radiation. An infrared detection system monitors material absorption of the infrared radiation by the materials. A method of monitoring the infrared absorption spectrum of a library of materials includes synthesizing an array of material on a substrate. The materials are irradiated with infrared radiation and the absorption of the infrared radiation by the materials is monitored for each material.
1. A method of monitoring the infrared absorption spectrum of a library of materials contained in an array, said method comprising:
synthesizing said array of materials on a substrate;
irradiating said array of materials with monochromatic infrared radiation; and
monitoring material absorption of the monochromatic infrared radiation for each of said materials of said array as a function of time.
2. The method of claim 1 , wherein the irradiating of said array comprises sequentially irradiating said materials of said array.
3. The method of claim 1 , wherein the irradiating of said array comprises simultaneously irradiating said materials of said array.
4. The method of claim 1 , wherein said materials contained in the array comprise polymers.
5. The method of claim 1 , wherein the monitoring comprises monitoring a relative change in absorption of a frequency absorbed by double carbon bonds.
6. The method of claim 5 , wherein the monitoring comprises monitoring a relative change in absorption at least one of 1650 cm −1 wavelength energy and 2200 cm −1 wavelength energy.
7. A method of monitoring the infrared absorption spectrum of a library of materials contained in an array, said method comprising:
synthesizing said array of materials on a substrate;
irradiating said array of materials with polychromatic infrared radiation;
filtering radiation passing through said array of materials with at least one optical filter, wherein said filter is selected to pass a desired wavelength spectra; and
monitoring material absorption of the desired wavelength spectra for each of said materials of said array as a function of time.
8. The method of claim 7 , wherein said materials contained in the array comprise polymers.
9. The method of claim 7 , wherein said filter is selected to pass a frequency absorbed by double carbon bonds and wherein the monitoring comprises monitoring a relative change in absorption of the frequency absorbed by double carbon bonds.
10. A system for monitoring the infrared absorption of each of a plurality of materials contained in a combinatorial array of materials, the system comprising:
an infrared transparent substrate for containing said combinatorial array of materials;
an infrared radiation source, wherein said radiation source sequentially irradiates each of said plurality of materials with infrared radiation; and
an infrared detection system monitoring material absorption of the infrared radiation as a function of time for each of said plurality of materials.
11. The system of claim 10 , wherein said radiation source is a monochromatic source.
12. The system of claim 10 , wherein said radiation source is a polychromatic source, said system further comprising at least one optical filter interposed between said combinatorial array of materials and said infrared detection system.
13. The system of claim 10 in combination with said plurality of materials on the substrate, wherein the materials comprise polymers.
14. The system of claim 10 wherein the infrared detection system is adapted to detect specific frequencies that are absorbed by double carbon bonds.
15. A system for monitoring the infrared absorption of each of a plurality of materials contained in a combinatorial array of materials, the system comprising:
an infrared transparent substrate for containing said combinatorial array of materials;
an infrared radiation source, wherein said radiation source simultaneously irradiates said plurality of materials with infrared radiation; and
an infrared detection system monitoring material absorption of the infrared radiation as a function of time for each of said plurality of materials.
16. The system of claim 15 , wherein said radiation source is a monochromatic source.
17. The system of claim 15 , wherein said radiation source is a polychromatic source, the system further comprising at least one optical filter interposed between said combinatorial array of materials and said infrared detection system.
18. The system of claim 15 in combination with said plurality of materials, the materials comprising polymers.
19. The system of claim 15 , wherein the infrared detection system is adapted to detect a frequency absorbed by double carbon bonds.