IP Library › Granted Patent US 9,358,556
Granted Patent B2
US 9,358,556 · App. 13/918,759 · Granted Jun 7, 2016

Electrically-driven fluid flow and related systems and methods, including electrospinning and electrospraying systems and methods

Inventors: Luis Fernando Velásquez-García (Newton, MA); Philip James Ponce De Leon (Cambridge, MA); Frances Ann Hill (Cambridge, MA)
Assignee: Massachusetts Institute of Technology
B05B5/025B05B1/14B05B5/0255B05B5/0536B05D1/007B82Y30/00D01D5/0069
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Quick Facts
Patent No.
US 9,358,556
App. No.
13/918,759
Granted
Jun 7, 2016
Kind
B2
Abstract

Systems and methods in which the flow of fluid is electrically driven, including electrospinning and electrospraying systems and methods, are generally described.

Claims (17)

1. An emitter configured for use in electrospraying and/or electrospinning systems, comprising:

an array of protrusions extending from an emitter substrate, at least a portion of the protrusions in the array comprising a plurality of microstructures extending from external surfaces of the protrusions,

wherein the microstructures are arranged on the surfaces of the protrusions in an ordered fashion.

2. The emitter of claim 1 , wherein the microstructures are configured to transport fluid from bases of the protrusions to tips of the protrusions via capillary forces.

3. The emitter of claim 1 , wherein the protrusions have an aerial density of at least about 9 protrusions/cm 2 .

4. The emitter of claim 3 , wherein the protrusions have an aerial density of from about 9 protrusions/cm 2 to about 100,000 protrusions/cm 2 .

5. The emitter of claim 1 , wherein the protrusions do not contain internal fluid passageways.

6. The emitter of claim 1 , wherein the microstructures are arranged such that each microstructure has a nearest neighbor distance, and the standard deviation of the nearest neighbor distances of the microstructures is less than about 100% of the average of the nearest neighbor distances of the microstructures.

7. The emitter of claim 1 , wherein the microstructures are arranged substantially periodically.

8. The emitter of claim 1 , wherein the microstructures comprise nano structures.

9. The emitter of claim 1 , wherein the protrusions are substantially uniform in shape.

10. The emitter of claim 1 , wherein the protrusions have volumes, and the standard deviation of the volumes of the protrusions is less than about 100% of the average of the volumes of the protrusions.

11. The emitter of claim 1 , wherein the protrusions comprise tips having radii of curvature, and the standard deviation of the radii of curvature of the protrusion tips is less than about 100% of the average of the radii of curvature of the protrusion tips.

12. The emitter of claim 1 , wherein the array of protrusions is a substantially planar array.

13. The emitter of claim 1 , wherein the protrusions are substantially perpendicular to the emitter substrate.

14. The emitter of claim 1 , wherein at least some of the microstructures are micropillars.

15. The emitter of claim 14 , wherein at least some of the micropillars have a substantially rectangular prismatic shape or a substantially cylindrical shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2013
From: VELASQUEZ-GARCIA, LUIS FERNANDO; PONCE DE LEON, PHILIP JAMES; HILL, FRANCES ANN
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 030837/0275 →
Continuity (3)
Provisional Application 61827893 · May 28, 2013
Provisional Application 61827905 · May 28, 2013
Related Publication 20140353860A1 · Dec 4, 2014