IP Library Granted Patent US 10,935,513
Granted Patent B2
US 10,935,513 · App. 15/512,813 · Granted Mar 2, 2021

Sensor for volatile organic compound detection

Inventor: Chung Chiun Liu (Cleveland, OH)
Assignee: CASE WESTERN RESERVE UNIVERSITY
G01N27/4074G01N27/4045G01N27/48G01N33/0047G01N33/48707G01N33/497G01N2033/4975
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Quick Facts
Patent No.
US 10,935,513
App. No.
15/512,813
Granted
Mar 2, 2021
Kind
B2
Abstract

A sensor for detecting volatile organic compounds (VOCs) includes a substrate, a working electrode formed on a surface of the substrate, a counter electrode formed on the surface of the substrate, a dielectric layer covering a portion of the working electrode and counter electrode and defining an aperture exposing other portions of the working electrode and counter electrode.

Claims (35)

1. A sensor for the detection of volatile organic compounds (VOCs) comprising:

a substrate;

a working electrode formed on a surface of the substrate;

a counter electrode formed on the surface of the substrate;

a dielectric layer covering a portion of the working electrode and counter electrode and defining an aperture exposing other portions of the working electrode and counter electrode; and

a membrane covering the entirety of exposed portions of the working electrode and counter electrode that facilitates an electrochemical oxidation reduction reaction with VOCs, the membrane including a cation permeable thermoplastic perfluorosulfonic acid polymer film, diethylene glycol, an acid for contributing protons, and tungsten trioxide;

wherein the membrane is semi-permeable to allow passage of a VOC through the membrane and inhibit the passage of anions that interfere with VOC detection.

2. The sensor of claim 1 , wherein the VOC detected is acetone.

3. The sensor of claim 1 , wherein the working electrode and the counter electrode comprise metalized films.

4. The sensor of claim 1 , wherein the working electrode and counter electrode independently comprise gold, platinum, palladium, silver, carbon, alloys thereof, and composites thereof.

5. The sensor of claim 1 , the acid comprising sulfuric acid.

6. The sensor of claim 1 , the metalized films are provided on the surface of the substrate by sputtering or coating the films on the surface and wherein the working electrode and the counter electrode are formed using laser ablation.

7. The sensor of claim 1 , further comprising a reference electrode on the surface of the substrate, the dielectric covering a portion of the reference electrode.

8. The sensor of claim 1 , further comprising a measuring device for applying voltage potentials to the working electrode and counter electrode and measuring the current flow between the working electrode and counter electrode.

9. A sensor for detection of acetone in a bodily sample, the sensor comprising:

a substrate;

a working electrode formed on a surface of the substrate;

a counter electrode formed on the surface of the substrate;

a reference electrode formed on the surface of the substrate;

a dielectric layer covering a portion of the working electrode, counter electrode, and reference electrode, the dielectric defining an aperture exposing other portions of the working electrode, counter electrode, and reference electrode; and

a membrane covering the entirety of exposed portions of the working electrode, counter electrode, and reference electrode that facilitates an electrochemical oxidation reduction reaction with acetone, the membrane including a cation permeable thermoplastic perfluorosulfonic acid polymer film, diethylene glycol, an acid for contributing protons, and a metal oxide comprising tungsten trioxide;

wherein the membrane is semi-permeable to allow passage of acetone through the membrane and inhibit the passage of anions that interfere with acetone detection.

10. The sensor of claim 9 , wherein the biological sample is a biological fluid.

11. The sensor of claim 9 , wherein the biological fluid is exhaled air, blood, or other physiological fluids.

12. The sensor of claim 9 , wherein the working electrode and the counter electrode comprise metalized films.

13. The sensor of claim 9 , wherein the working electrode and counter electrode independently comprise gold, platinum, palladium, silver, carbon, alloys thereof, and composites thereof.

14. The sensor of claim 9 , the acid comprising sulfuric acid.

15. The sensor of claim 9 , the metalized films are provided on the surface of the substrate by sputtering or coating the films on the surface and wherein the working electrode and the counter electrode are formed using laser ablation.

16. A sensor for the detection of volatile organic compounds (VOCs) comprising:

a substrate;

a working electrode formed on a surface of the substrate;

a counter electrode formed on the surface of the substrate;

a dielectric layer covering a portion of the working electrode and counter electrode and defining an aperture exposing other portions of the working electrode and counter electrode; and

a membrane covering the entirety of exposed portions of the working electrode and counter electrode that facilitates an electrochemical oxidation reduction reaction with VOCs, the membrane including a cation permeable thermoplastic perfluorosulfonic acid polymer film, diethylene glycol, sulfuric acid for contributing protons, and tungsten trioxide;

wherein the membrane is semi-permeable to allow passage of a VOC through the membrane and inhibit the passage of anions that interfere with VOC detection.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2020
From: LIU, CHUNG CHIUN
To: CASE WESTERN RESERVE UNIVERSITY
Reel/Frame 052152/0706 →
Continuity (2)
Provisional Application 62052214 · Sep 18, 2014
Related Publication 20170248541A1 · Aug 31, 2017