IP Library Granted Patent US 7,994,592
Granted Patent B2
US 7,994,592 · App. 11/182,906 · Granted Aug 9, 2011

Method for integrating micro and nanoparticles into MEMS and apparatus including the same

Assignee: California Institute of Technology
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Quick Facts
Patent No.
US 7,994,592
App. No.
11/182,906
Granted
Aug 9, 2011
Kind
B2
Abstract

MEMs devices are integrally fabricated with included micro or nanoparticles by providing a mixture of a sacrificial material and a multiplicity of particles, disposing the mixture onto a substrate, fabricating a MEMs structure on the substrate including at least part of the mixture, so that at least some of the mixture is enclosed in the MEMs structure, removing the sacrificial material, and leaving at least some of the multiplicity of particles substantially free and enclosed in the MEMs structure. The step of fabricating a MEMs structure is quite general and is contemplated as including one or a multiplicity of additional steps for creating some type of structure in which the particles, which may be microbeads or nanobeads, are included. A wide variety of useful applications for MEMs integrated with micro or nanoparticles are available.

Claims (45)

1. A MEMS device comprising:

a substrate; and

a mixture, the mixture comprising:

a sacrificial material; and

a multiplicity of particles,

wherein the mixture has a thickness of at least 12 μm,

wherein the mixture is disposed on the substrate, and

wherein the multiplicity of particles comprises fluorescent or dyed microspheres.

2. The MEMS device of claim 1 , wherein at least some of the multiplicity of particles are substantially free and enclosed in the MEMS structure.

3. The MEMS device of claim 1 , wherein the MEMS device is integrally formed.

4. The MEMS device of claim 1 , wherein the mixture is photolithographically patterned.

5. The MEMS device of claim 1 , wherein the sacrificial material comprises one of a photoresist, a polysilicon, or a sputtered amorphous silicon.

6. The MEMS device of claim 1 , further comprising a microchannel having the multiplicity of particles retained therein.

7. The MEMS device of claim 1 , wherein the fluorescent or dyed microspheres comprise micro or nanoparticles, magnetic microspheres, or encapsulated microspheres having chemically specific polymer shells.

8. The MEMS device of claim 1 , further comprising a column that includes a microchannel, a column inlet, and a column outlet.

9. The MEMS device of claim 1 , further comprising a parylene column that includes a microchannel, a column inlet, and a column outlet.

10. The MEMS device of claim 1 , further comprising a structure that retains at least some of the multiplicity of particles, wherein the structure comprises at least one filter microfabricated on the substrate.

11. The MEMS device of claim 1 , further comprising a high performance liquid chromatography (HPLC) column that includes a microchannel, a column inlet, and a column outlet.

12. The MEMS device of claim 1 , wherein the MEMS device is configured as a micropump or a micro valve.

13. A MEMS device comprising:

a substrate; and

a mixture, the mixture comprising:

a sacrificial material; and

a multiplicity of particles,

wherein the mixture is disposed on the substrate, and

wherein the multiplicity of particles comprises microspheres adapted to bind proteins or antibodies.

14. The MEMS device of claim 13 , wherein at least some of the multiplicity of particles are substantially free and enclosed in the MEMS structure.

15. The MEMS device of claim 13 , wherein the MEMS device is integrally formed.

16. The MEMS device of claim 13 , wherein the mixture is photolithographically patterned.

17. The MEMS device of claim 13 , wherein the sacrificial material comprises one of a photoresist, a polysilicon, or a sputtered amorphous silicon.

18. The MEMS device of claim 13 , further comprising a microchannel having the multiplicity of particles retained therein.

19. The MEMS device of claim 13 , wherein the microspheres adapted to bind proteins or antibodies comprise micro or nanoparticles, magnetic microspheres, or encapsulated microspheres having chemically specific polymer shells.

20. The MEMS device of claim 13 , further comprising a column that includes a microchannel, a column inlet, and a column outlet.

21. A MEMS device comprising:

a substrates and

a mixture, the mixture comprising:

a sacrificial material; and

a multiplicity of particles,

wherein the mixture is disposed on the substrate, and

wherein the multiplicity of particles comprises expandable or electrokinetic microspheres.

22. The MEMS device of claim 21 , wherein at least some of the multiplicity of particles are substantially free and enclosed in the MEMS structure.

23. The MEMS device of claim 21 , wherein the MEMS device is integrally formed.

24. The MEMS device of claim 21 , wherein the mixture is photolithographically patterned.

25. The MEMS device of claim 21 , wherein the sacrificial material comprises one of a photoresist, a polysilicon, or a sputtered amorphous silicon.

26. The MEMS device of claim 21 , further comprising a microchannel having the multiplicity of particles retained therein.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 4, 2012
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 027479/0448 →
CONFIRMATORY LICENSE Recorded Jul 29, 2008
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 021307/0100 →
Continuity (3)
Division 10391122 · Mar 18, 2003
Provisional Application 60366019 · Mar 19, 2002
Related Publication 20050247989A1 · Nov 10, 2005