IP Library › Granted Patent US 8,920,619
Granted Patent B2
US 8,920,619 · App. 12/952,392 · Granted Dec 30, 2014

Carbon nanotube sensor

Inventors: Corey Alan Salzer (Fort Collins, CO); Russell Martin Young (Fort Collins, CO); Michael Mario Carrabba (Ashland, OR); Vishnu Vardhanan Rajasekharan (Fort Collins, CO); Christopher Patrick Fair (Windsor, CO); Terrance William Fitzgerald (Fort Collins, CO); Frank Howland Carpenter, Jr. (Fort Collins, CO); John Edwin Lee (Fort Collins, CO)
Assignee: Hach Company
G01N33/1886G01N27/308C02F2209/06C02F2209/008C02F2209/29
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Quick Facts
Patent No.
US 8,920,619
App. No.
12/952,392
Granted
Dec 30, 2014
Kind
B2
Abstract

The present invention provides a remote monitoring system for monitoring the operation of a fluid treatment system and/or the qualities, characteristics, properties, etc., of the fluid being processed or treated by the fluid treatment system. The present invention also relates to carbon nanotube sensors.

Claims (15)

1. A sensing device, comprising:

a substrate; and

four carbon nanotube arrays arranged on the substrate, each one of said four carbon nanotube arrays individually including:

a plurality of carbon nanotube rows, each row including a plurality of carbon nanotubes, each carbon nanotube in a respective row being directly bound at one end to the substrate,

first and second contiguous array sections, the first array section including at least two rows of the plurality of carbon nanotube rows, and the second array section including at least one row of the plurality of carbon nanotube rows, the carbon nanotubes within an array section having the same functionality,

each array section being configured to be individually addressable, such that all carbon nanotubes within the array section are addressable via a common connection line, and

each array section being configured to sense a corresponding analyte when exposed to a fluid solution containing one or more analytes.

2. The sensing device of claim 1 , wherein the carbon nanotubes in the first array section having a first functionality and the carbon nanotubes in the second array section having a second functionality.

3. The sensing device of claim 2 , wherein the first functionality is different from the second functionality.

4. The sensing device of claim 2 , wherein the first functionality is the same as the second functionality.

5. The sensing device of claim 1 , wherein the at least two carbon nanotube rows are adjacent carbon nanotube rows.

6. The sensing device of claim 1 , wherein the carbon nanotube rows in the first section and the carbon nanotube rows in the second section are alternating carbon nanotube rows.

7. The sensing device of claim 1 , wherein the two array sections sense different analytes.

8. The sensing device of claim 1 , wherein the carbon nanotubes in at least one array section are hydrophilic.

9. The sensing device of claim 1 , wherein the first array section is separated from the second array section by a distance which is substantially the same as a distance between two adjacent rows of said plurality of carbon nanotube rows.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2011
From: SALZAR, COREY ALAN; YOUNG, RUSSELL MARTIN; CARRABBA, MICHAEL MARIO; RAJASEKHARAN, VISHNU VARDHANAN; FAIR, CHRISTOPHER PATRICK; FITZGERALD, TERRANCE WILLIAM; CARPENTER, FRANK HOWLAND, JR.; LEE, JOHN EDWIN
To: HACH COMPANY
Reel/Frame 025766/0610 →
Continuity (1)
Related Publication 20120125771A1 · May 24, 2012