IP Library Granted Patent US 9,889,076
Granted Patent B2
US 9,889,076 · App. 15/041,314 · Granted Feb 13, 2018

Light attenuating formulations

Inventors: Olga Alexander Shenderova (Raleigh, NC); Varvara Grichko (College Station, TX)
Assignees: Adámas Nanotechnologies, Inc.; International Technology Center
A61K8/19A61K8/0241A61K8/04A61K8/30A61Q17/04C04B26/02C09D5/32C09D7/1216C09D7/1266C09D7/1275C09K11/65A61K2800/412A61K2800/413A61K2800/43A61K2800/614A61K2800/81C04B2111/00482C04B2111/2076C08K3/04Y10T428/25
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,889,076
App. No.
15/041,314
Granted
Feb 13, 2018
Kind
B2
Abstract

A preparation provides light or radiation attenuation between about 190 and 800 nm has an amount of diamond nanoparticles in a medium, where the diamond nanoparticles have a size between about 1 nm and 1000 nm are modified to enhance absorption or photoluminescence. This abstract is not to be considered limiting, since other embodiments may deviate from the features described in this abstract.

Claims (35)

1. A diagnostic or therapeutic agent for imaging, labeling, tracing, tagging, sensing or biodetection, comprising:

an effective amount of diamond nanoparticles in a physiologically compatible carrier medium, where a plurality of the diamond nanoparticle comprise a size greater than about 1 nm and less than about one micron;

the diamond nanoparticles having an attached diagnostic agent or an attached therapeutic agent;

where at least a portion of the diamond nanoparticles are modified to enhance absorption and photoluminescence when exposed to light due to increased amount of internal defects or color centers within the diamond nanoparticles; and

where enhanced absorption or photoluminescence occurs when exposed to excitation light having a wavelength between approximately 190 and 400 nm.

2. An imaging, tagging, marking or bar code material, comprising:

a carrier medium containing a dispersion of diamond particles, where a plurality of the diamond particles comprise a size less than 50 micron;

where at least a portion of the diamond particles comprise modified diamond particles that are modified to enhance absorption and photoluminescence when exposed to an excitation light source with a wavelength between approximately 190 and 1100 nm; and

whereby, presence of the material is detected by inducing photoluminescence of the diamond particles by excitation with light of a prescribed excitation wavelength between approximately 190 and 1100 nm.

3. The material according to claim 2 , where diamond particle comprise particles with a size between about 1 nm and slightly larger than 1000 nanometers.

4. The material according to claim 2 , where the emitted photoluminescent spectrum is determined at least in part by the type of diamond particles, the type of the structural defects and the excitation light wavelength.

5. The material according to claim 2 , where presence of the material is detected by measuring both Raman and photoluminescent spectra.

6. The material according to claim 2 , where presence of the material is detected by the presence of the zero-phonon electron transitions including, but not limited to the zero-phonon lines 575 nm and 638 nm, related to the neutral and negatively charged nitrogen-vacancy defects, correspondingly.

7. The material according to claim 2 , where the presence of the material is detected by methods comprising: detecting presence of bright PL spots with stable emission; detection by measuring both Raman and photoluminescent spectra, by excitation of the emission with light of a prescribed excitation wavelength between approximately 190 and 1100 nm.

8. The material according to claim 2 , where emission wavelength and intensity depends on treatment of diamond particles, where treatment includes at least one of irradiation, annealing or oxidation.

9. The material according to claim 2 , where the carrier medium comprises a physiologically compatible carrier medium or a pharmacologically suitable medium.

10. The material according to claim 1 , where a plurality of the diamond particles comprise a size greater than about 1 nm and less than about one micron.

11. The material according to claim 2 , where the diamond particles have an attached diagnostic agent or an attached therapeutic agent.

12. The material according to claim 2 , where the carrier medium comprises one of an aqueous solution, a polar organic solvent, a natural oil, a synthetic oil, an oil-in-water emulsion, a water-in-oil emulsion, coatings, sealers, varnishes, paints, top-coatings, lacquers, shellacs, polyurethanes, urethanes, acrylics, acrylic urethanes, films, polishes, waxes wax-like products, and plastics.

13. The material according to claim 2 , where the modified diamond particles are modified to enhance absorption and photoluminescence when exposed to light having a wavelength between approximately 190 and 1100 nm due to increased structural defects comprising N-V centers, defect centers due to dopant atoms, self-interstitials, vacancies, complexes of the above, complexes of charged defects, or dislocations that cause absorption and photoluminescence.

14. The material according to claim 2 , where the modified diamond particles comprise irradiated diamond particles that are annealed subsequent to irradiation.

15. The material according to claim 13 , where the excitation light is absorbed by structural features of the modified diamond particles and then is emitted at a longer wavelength.

16. The material according to claim 15 , where at least a portion of the diamond particles comprise diamond particles that are modified to enhance photoluminescence when exposed to excitation light, and where the wavelength of the emitted light is determined at least in part by the type of diamond particles, the type of the structural defects and excitation light wavelength.

17. The material according to claim 2 , where the diamond particles are produced by detonation, shock wave, or chemical vapor deposition, or nucleation of diamond powder in the gas phase, or ion irradiation of graphite, or chlorination of carbides, or obtained by processing of micron-sized natural diamond particles or of high-pressure-high-temperature diamond synthesis to smaller size particles.

18. The material according to claim 17 , where the processing of micron sized diamond particles to smaller size particles includes at least a portion of diamond nanoparticles modified by at least one of grinding, milling, treatment in atmospheric or sub-atmospheric pressure plasma, purification, fractionated by centrifugation and grading of the powder.

19. The material according to claim 2 , where the diamond particles comprise functionalized diamond particles or diamond particles with attached organic molecules.

20. The material according to claim 2 , where the modified diamond particles comprise diamond particles having surface functionalization that improves dispersivity and enhances resistance to agglomeration and sedimentation in polar and non-polar media compared to diamond particles in their unmodified state.

21. The material according to claim 2 , where the diamond particles comprise functionalized diamond particles, and where the functionalized diamond particles are functionalized with at least one of the materials selected from the group consisting of carboxyl, hydroxyl, amino, carbonyl groups and surface fluoride.

22. A material, comprising:

a carrier medium;

a plurality of diamond particles having size less than 50 microns dispersed in the carrier medium;

where at least a portion of the diamond particles comprise modified diamond particles that are modified to enhance absorption and photoluminescence when exposed to an excitation light source with a wavelength between approximately 190 and 1100 nm.

23. The material according to claim 22 , where the diamond particles emit light having colors that are dependent upon the properties of the modified diamond particles, the excitation light and the composition of the carrier medium.

24. The material according to claim 22 , where a portion of the carrier medium or underlying material is concealed by absorption, photoluminescence, dispersion and diffusion of light.

25. The material according to claim 22 , where the diamond particles provide a target fingerprint.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2016
From: SHENDEROVA, OLGA ALEXANDER
To: ADAMAS NANOTECHNOLOGIES INC
Reel/Frame 037712/0179 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2016
From: GRICHKO, VARVARA
To: INTERNATIONAL TECHNOLOGY CENTER INC
Reel/Frame 037812/0364 →
Continuity (11)
Continuation In Part 14273759 · May 9, 2014
Continuation In Part 14978184 · Dec 22, 2015
Division 12660457 · Feb 26, 2010
Continuation In Part 11990948
Continuation In Part 11338527 · Jan 24, 2006
Provisional Application 61233950 · Aug 14, 2009
Provisional Application 61162457 · Mar 23, 2009
Provisional Application 61156571 · Mar 2, 2009
Provisional Application 60712507 · Aug 30, 2005
Provisional Application 60646783 · Jan 25, 2005
Related Publication 20160166482A1 · Jun 16, 2016