IP Library Granted Patent US 9,875,875
Granted Patent B2
US 9,875,875 · App. 15/272,574 · Granted Jan 23, 2018

Method and apparatus for a porous electrospray emitter

Inventors: Paulo C. Lozano (Arlington, MA); Steven Mark Arestie (Redondo Beach, CA)
Assignee: Massachusetts Institute of Technology
H01J37/08H01J2237/317
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Quick Facts
Patent No.
US 9,875,875
App. No.
15/272,574
Granted
Jan 23, 2018
Kind
B2
Abstract

An ionic liquid ion source can include a microfabricated body including a base and a tip. The body can be formed of a porous material compatible with at least one of an ionic liquid or room-temperature molten salt. The body can have a pore size gradient that decreases from the base of the body to the tip of the body, such that the at least one of an ionic liquid or room-temperature molten salt is capable of being transported through capillarity from the base to the tip.

Claims (23)

1. An electrospray emitter array comprising:

a substrate; and

a plurality of porous emitters, wherein each porous emitter extends from the substrate to a tip, and wherein each porous emitter has a pore size gradient such that a pore size of each porous emitter decreases in a direction from the substrate toward the tip.

2. The electrospray emitter array of claim 1 , further comprising a source of ions in fluid communication with the plurality of porous emitters through the substrate.

3. The electrospray emitter array of claim 2 , wherein the source of ions comprises at least one of an ionic liquid and a room-temperature molten salt.

4. The electrospray emitter array of claim 2 , further comprising a first electrode electrically connected to the plurality of porous emitters through the source of ions and at least a second electrode positioned downstream relative to the plurality of porous emitters and the first electrode.

5. The electrospray emitter array of claim 4 , wherein the plurality of porous emitters are configured to emit ions when a voltage potential is applied to the plurality of porous emitters.

6. The electrospray emitter array of claim 5 , wherein at least a portion of a porous emitter body is disposed in or on the source of ions such that the source of ions is transported by capillarity from a base of the porous emitter body to the tip of the porous emitter body.

7. The electrospray emitter array of claim 6 , wherein the substrate is a porous substrate.

8. The electrospray emitter array of claim 6 , wherein the porous emitter body comprises at least one of a metal, a dielectric material, and a porous xerogel.

9. The electrospray emitter array of claim 8 , wherein the porous xerogel is an alumina xerogel.

10. The electrospray emitter array of claim 6 , wherein the porous emitter body is a flat ribbon-like needle.

11. The electrospray emitter array of claim 6 , wherein pores of the plurality of porous emitters have a diameter between or equal to about 3 μm and 50 μm.

12. An electrospray emitter comprising:

an emitter body with a base and a tip, wherein the emitter body is formed at least partially from a porous xerogel; and

a source of ions in fluid communication with the emitter body.

13. The electrospray emitter of claim 12 , wherein the emitter body has a pore size gradient such that a pore size of the emitter body decreases in a direction from the base of the emitter body toward the tip of the emitter body.

14. The electrospray emitter of claim 13 , wherein the source of ions comprises at least one of an ionic liquid and a room-temperature molten salt.

15. The electrospray emitter of claim 14 , further comprising a first electrode electrically connected to the emitter body through the source of ions and a second electrode positioned downstream relative to the emitter body and the first electrode.

16. The electrospray emitter of claim 15 , wherein the emitter body is configured to emit ions when a voltage potential is applied to the emitter body.

17. The electrospray emitter of claim 15 , wherein at least a portion of the emitter body is disposed in or on the source of ions such that the source of ions is transported by capillarity from the base of the emitter body to the tip of the emitter body.

18. The electrospray emitter of claim 17 , wherein the emitter body is a porous emitter body.

19. The electrospray emitter of claim 12 , wherein the porous xerogel is an alumina xerogel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2016
From: LOZANO, PAULO C.; ARESTIE, STEVEN MARK
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 040261/0340 →
Continuity (8)
Continuation 14336814 · Jul 21, 2014
Continuation 14070351 · Nov 1, 2013
Continuation In Part 13839064 · Mar 15, 2013
Continuation In Part 13681155 · Nov 19, 2012
Continuation 12990923
Provisional Application 61050847 · May 6, 2008
Provisional Application 61695034 · Aug 30, 2012
Related Publication 20170110284A1 · Apr 20, 2017