IP Library Granted Patent US 7,531,203
Granted Patent B2
US 7,531,203 · App. 11/029,647 · Granted May 12, 2009

Method for the production of conductive flexible textile arrays

Assignee: The Hong Kong Polytechnic University
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Quick Facts
Patent No.
US 7,531,203
App. No.
11/029,647
Granted
May 12, 2009
Kind
B2
Abstract

A method for the production of a conductive flexible textile array. The method includes the application of an oxidizing agent to selected areas of the textile; coating the textile with pyrrole by vapor deposition to form a conductive coated textile having a polypyrrole network; stabilizing the conductive coated textile; and forming the conductive flexible textile arrays as a sensor. With this method of production, the degree of polymerization of the conjugated polymer, the morphology and the rate of the capacitance delay is carefully controlled. As such, stable flexible textile sensors are produced with various levels of sensitivities and conductivities which are particularly useful for designed applications.

Claims (22)

1. A method for the production of conductive flexible textile arrays comprising:

applying an oxidising agent to selected areas of the textile;

coating the textile with pyrrole by vapour deposition to form a conductive polypyrrole coated textile;

stabilising the conductive polypyrrole coated textile by exposing the conductive polypyrrole coated textile to a radiating light source to degrade the polypyrrole; and

forming the conductive flexible textile arrays as a sensor.

2. A method for the production of conductive flexible textile arrays as claimed in claim 1 wherein said oxidising agent is applied by a jet spray technique.

3. A method for the production of conductive flexible textile arrays as claimed in claim 1 wherein said oxidising agent is applied by screen printing.

4. A method for the production of conductive flexible textile arrays as claimed in claim 1 wherein said oxidising agent is applied by inkjet printing.

5. A method for the production of conductive flexible textile arrays as claimed in claim 1 wherein said oxidising agent is applied by padding.

6. A method for the production of conductive flexible textile arrays as claimed in claim 1 wherein said pyrrole is applied by exposure of the textile with the oxidising agent still wet to an atmosphere saturated with pyrrole monomer vapor under a vacuum.

7. A method for the production of conductive flexible textile arrays as claimed in claim 6 wherein said deposition occurs at substantially room temperature and continues for approximately 24 hours.

8. A method for the production of conductive flexible textile arrays comprising

applying an oxidising agent to selected areas of the textile;

coating the textile with pyrrole by vapour deposition to form a conductive polypyrrole coated textile;

stabilising the conductive polypyrrole coated textile by exposing the conductive polypyrrole coated textile to a washing process to age the coating; and

forming the conductive flexible textile arrays as a sensor.

9. A method for the production of conductive flexible textile arrays comprising

applying an oxidising agent to selected areas of the textile;

coating the textile with pyrrole by vapour deposition to form a conductive polypyrrole coated textile;

stabilising the conductive polypyrrole coated textile by exposing the conductive polypyrrole coated textile to application of an electrical current to the polypyrrole coated textile; and

forming the conductive flexible textile arrays as a sensor.

10. A method for the production of conductive flexible textile arrays as claimed in claim 9 wherein said stabilising includes applying an electrical current to the textile during the vapor deposition of the pyrrole onto the textile to control the morphology of the conductive coated textile.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2005
From: TAO, XIAOMING; LEUNG, SARAH MEI-YI; YUEN, MARCUS CHUN-WAH; KWOK, WING-YIN; HO, HOI-LUT
To: HONG KONG POLYTECHNIC UNIVERSITY, THE
Reel/Frame 016493/0007 →
Continuity (1)
Related Publication 20060148351A1 · Jul 6, 2006