IP Library Granted Patent US 7,179,421
Granted Patent B1
US 7,179,421 · App. 10/349,689 · Granted Feb 20, 2007

Multi-pin chemiresistors for microchemical sensors

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 7,179,421
App. No.
10/349,689
Granted
Feb 20, 2007
Kind
B1
Abstract

A multi-pin chemiresistor for use in microchemical sensors. A pair of free-standing, bare wires is supported by an electrically insulating support, and are oriented parallel to each other and spaced closely together. A free-standing film of a chemically sensitive polymer that swells when exposed to vapors of a volatile chemical is formed in-between the pair of closely-spaced wires by capillary action. Similar in construction to a thermocouple, this “chemicouple” is relatively inexpensive and easy to fabricate by dipping the pair of bare wires into a bath of well-mixed chemiresistor ink. Also, a chemiresistor “stick” is formed by dipping an electrically insulating rod with two or more linear or spiral-wrapped electrical traces into the bath of well-mixed chemiresistor ink, which deposits a uniform coating of the chemically sensitive polymer on the rod and the electrical traces. These “sticks” can be easily removed and replaced from a multi-chemiresistor plug.

Claims (48)

1. A chemiresistor, comprising:

an electrically insulating support member;

two or more free-standing bare wires each having a proximal end supported by the support member, wherein the wires are oriented substantially parallel to each other, and are separated from each other by a small distance; and

a chemically sensitive polymer attached to, and suspended in-between, the two or more free-standing bare wires.

2. The chemiresistor of claim 1 , wherein the chemically sensitive polymer comprises a material that swells when exposed to vapors of a volatile compound.

3. The chemiresistor of claim 1 , wherein the chemically sensitive polymer comprises conductive particles embedded in a polymer matrix selected from the group consisting of poly(n-vinyl pyrrolidone), poly(vinyl alcohol), poly(ethylene-vinyl acetate), poly(isobutylene), poly(n-vinyl pyrrolidone), poly(epichlorohydrin), ethyl cellulose, poly(chloroprene), poly(diphenoxyphosphazine, and poly(caprolactone).

4. The chemiresistor of claim 1 , comprising three free-standing bare wires.

5. The chemiresistor of claim 1 , comprising four free-standing bare wires.

6. The chemiresistor of claim 5 ,

wherein two of the four free-standing bare wires are grouped together into a first chemiresistor pair, and the other two wires are grouped together into a second chemiresistor pair;

wherein the same chemically sensitive polymer attached to, and suspended in-between, each pair of free-standing bare wires; and

further wherein an overcoating of a chemically-selective material surrounds and covers the chemically sensitive polymer on only one of the two chemiresistor pairs, which can serve as a reference chemiresistor element.

7. The chemiresistor of claim 6 , wherein the chemically-selective material comprises a material that allows water vapor to permeate through, while blocking other chemical vapors from permeating.

8. The chemiresistor of claim 7 , wherein the chemically-selective material comprises a proton exchange membrane or Naflon™.

9. The chemiresistor of claim 1 , wherein the support member comprises a cylindrical plug comprising two or more male electrical connectors on the end opposite from the end supporting the two or more free-standing bare wires.

10. The chemiresistor of claim 1 , wherein the spacing between the two or more free-standing bare wires is sufficiently close so as to permit a chemiresistive ink to wet both conductors due to capillary action during fabrication, and subsequently form a dried, free-standing polymer film suspended in-between or inside of the two or more free-standing bare conductors.

11. The chemiresistor of claim 1 , wherein the spacing between the two exposed bare wires is less than approximately 100 microns.

12. The chemiresistor of claim 1 , wherein the length of a conductor is at least ten times the spacing between the two or more free-standing bare wires.

13. The chemiresistor of claim 1 , wherein the two or more free-standing bare wires are arranged in a U-shaped geometry, where the distal end of each wire is supported by the electrically insulating support member.

14. A chemiresistor, comprising:

a bundle of two or more insulated wires, each wire having a segment of free-standing bare wire; wherein the two or more segments of bare wires are oriented substantially parallel to each other, and are separated from each other by a small distance; and

a chemically sensitive polymer attached to, and suspended in-between, the two or more segments of free-standing bare wires.

15. The chemiresistor of claim 14 , further comprising a spacer disposed between the two or more insulated wires.

16. The chemiresistor of claim 14 , further comprising a hollow, cylindrical support tube surrounding and supporting the bundle of two or more insulated wires.

17. The chemiresistor of claim 16 , wherein the support tube comprises heat-shrinkable plastic tubing that has been heat-shrunk, thereby compressing and holding the bundle of wires together.

18. A chemiresistor, comprising:

two or more free-standing bare conductors, oriented substantially parallel to each other, and separated from each other by a small distance; and

a porous material disposed in-between, and supported by, the two or more free-standing bare conductors;

wherein a chemically sensitive polymer is disposed throughout the porous material, and contacts the two or more free-standing bare conductors.

19. The chemiresistor of claim 18 , wherein the conductors comprise plates.

20. A chemiresistor stick, comprising:

an electrically insulating rod;

two or more conductors disposed on the outer surface of the rod, wherein the conductors are oriented substantially parallel to each other, and are separated from each other by a small distance; and

a chemically sensitive polymer disposed on the outer surface of the rod, contacting the two or more conductors.

21. The chemiresistor of claim 20 , wherein the rod comprises a cylindrical cross-section whose length is greater than about five times its diameter.

22. The chemiresistor of claim 21 , wherein each conductor has the shape of a straight line oriented parallel to the long direction of the rod.

23. The chemiresistor of claim 21 , comprising four conductors disposed evenly around the circumference of the rod.

24. The chemiresistor of claim 20 , wherein the two or more conductors wrap around the outer surface of the rod in a dual-track, spiral wrapped geometry.

25. The chemiresistor of claim 20 , wherein the rod comprises a square or rectangular cross-section.

26. The chemiresistor of claim 25 , wherein the two or more conductors comprise thick film or thin film metallized traces.

27. A microchemical sensor, comprising a plurality of chemiresistor sticks supported by an electrically insulating plug, wherein each chemiresistor stick comprises:

an electrically insulating rod;

two or more conductors disposed on the outer surface of the rod, wherein the conductors are oriented substantially parallel to each other, and are separated from each other by a small distance; and

a chemically sensitive polymer disposed on the outer surface of the rod, contacting the two or more conductors.

28. The microchemical sensor of claim 27 , wherein each rod comprises a cylindrical cross-section, and wherein each two or more conductors wrap around the outer surface of each rod in dual-track, spiral wrapped geometry.

29. The microchemical sensor of claim 27 , wherein the plurality of chemiresistor sticks comprises four chemiresistor sticks.

30. The microchemical sensor of claim 29 , wherein each chemiresistor stick comprises a different chemically sensitive polymer matrix.

31. The microchemical sensor of claim 29 , wherein each chemiresistor stick is removable from the electrically insulating plug.

Assignments (3)
CHANGE OF NAME Recorded Aug 31, 2017
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 043742/0273 →
CONFIRMATORY LICENSE Recorded Jul 1, 2003
From: SANDIA CORPORATION
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 014229/0037 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2003
From: HO, CLIFFORD K.
To: SANDIA NATIONAL LABORATORIES
Reel/Frame 013775/0517 →