IP Library Granted Patent US 9,599,562
Granted Patent B2
US 9,599,562 · App. 14/952,216 · Granted Mar 21, 2017

Conjugates of nano-diamond and magnetic or metallic particles

Inventor: Dirk R. Englund (New York, NY)
Assignee: THE TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK
G01N21/64G01N21/643G01N21/6428G01N21/6458G01N33/48728G01N33/54326G01N33/585G01N33/587B82Y15/00G01N22/00
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Quick Facts
Patent No.
US 9,599,562
App. No.
14/952,216
Granted
Mar 21, 2017
Kind
B2
Abstract

Techniques for imaging a characteristic of a sample with a plurality of conjugates of diamond-metallic nanoparticles having a nitrogen vacancy center. The plurality of conjugates can be exposed to a sample and the nitrogen vacancy centers can be optically pumped. One or more microwave pulses can be applied to the nitrogen vacancy center, and a fluorescent response can be detected.

Claims (26)

1. A nanoparticle diamond-metal conjugate, comprising:

a diamond nanoparticle having a nitrogen vacancy center;

a metallic nanostructure,

wherein the diamond nanoparticle has a predetermined radius and is at least partially directly attached to a layer of the metallic nanostructure and wherein the nitrogen vacancy center is located at a distance d based at least in part on the predetermined radius of the diamond nanoparticle.

2. The nanoparticle diamond-metal conjugate of claim 1 , wherein the metallic nanostructure comprises a magnetic nanoparticle.

3. The nanoparticle diamond-metal conjugate of claim 2 , wherein the distance d is a predetermined distance corresponding to a radiative enhancement of the nitrogen vacancy center.

4. The nanoparticle diamond-metal conjugate of claim 2 , wherein the distance d corresponds to an optical dipole of the magnetic nanoparticle being a predetermined distance from the nitrogen vacancy center.

5. The nanoparticle diamond-metal conjugate of claim 1 ,

wherein the metallic nanostructure comprises the layer of metal having a predetermined thickness deposited over the diamond nanoparticle, the predetermined thickness corresponding to a radiative enhancement rate of the nitrogen vacancy center.

6. The nanoparticle diamond-metal conjugate of claim 5 , wherein the layer of metal comprises a metal selected from the group consisting of gold, silver, or a combination thereof.

7. The nanoparticle diamond-metal conjugate of claim 5 , wherein the layer of metal comprises a magnetic layer.

8. The nanoparticle diamond-metal conjugate of claim 7 , wherein the layer of metal comprises a metal selected from the group consisting of nickel, cobalt, iron, or chemical compounds thereof.

9. The nanoparticle diamond-metal conjugate of claim 1 , wherein a surface of the diamond nanoparticle is prepared with an acid treatment and treated with one or more amino-teminated silanes to provide an amine on the surface of the diamond nanoparticle,

a surface of the metal nanostructure is prepared with a molecule having an affinity to bond with the amine, and

the molecule of the surface of the metal nanostructure bonds to the amine of the surface of the diamond nanoparticle.

10. The nanoparticle diamond-metal conjugate of claim 9 , wherein the amine has a length corresponding to a radiative enhancement rate of the nitrogen vacancy center.

11. The nanoparticle diamond-metal conjugate of claim 9 , wherein the metal nanostructure comprises a metal selected from the group consisting of gold, silver, or a combination thereof.

12. The nanoparticle diamond-metal conjugate of claim 9 , wherein the metal nanostructure comprises a magnetic layer.

13. The nanoparticle diamond-metal conjugate of claim 12 , wherein the metal nanostructure comprises a metal selected from the group consisting of nickel, cobalt, iron, or chemical compounds thereof.

14. The nanoparticle diamond-metal conjugate of claim 1 , wherein a surface of the diamond nanoparticle is prepared with an acid treatment and adapted to link to a first end of the DNA strand,

the metal nanostructure is adapted to link to a second end of the DNA strand.

15. The nanoparticle diamond-metal conjugate of claim 14 , wherein the DNA strand comprises a DNA strand having a length corresponding to a radiative enhancement rate of the nitrogen vacancy center.

16. The nanoparticle diamond-metal conjugate of claim 14 , wherein the metal nanostructure comprises a metal selected from the group consisting of gold, silver, or a combination thereof.

17. The nanoparticle diamond-metal conjugate of claim 14 , wherein the metal nanostructure comprises a magnetic layer.

18. The nanoparticle diamond-metal conjugate of claim 17 , wherein the metal nanostructure comprises a metal selected from the group consisting of nickel, cobalt, iron, or chemical compounds thereof.

19. The nanoparticle diamond-metal conjugate of claim 1 , wherein being at least partially directly attached comprises the diamond nanoparticle being wholly directly attached to the layer of the metallic nanostructure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2023
From: ENGLUND, DIRK R.
To: THE TRUSTEES OF COLUMBIA UNIVERSITY IN THE CITY OF NEW YORK
Reel/Frame 063048/0825 →
Continuity (8)
Continuation 14150412 · Jan 8, 2014
Continuation PCTUS2012048830 · Jul 30, 2012
Provisional Application 61513830 · Aug 1, 2011
Provisional Application 61549046 · Oct 19, 2011
Provisional Application 61562551 · Nov 22, 2011
Provisional Application 61591570 · Jan 27, 2012
Provisional Application 61624647 · Apr 16, 2012
Related Publication 20160077004A1 · Mar 17, 2016