Claims
- 1. A thermally stable, piezoelectric and pyroelectric polymeric substrate comprising:
- (a) a polymeric member having a softening temperature greater than about 100.degree. C. wherein said member has the repeat unit: ##STR11## and (b) a metal electrode material deposited onto the polymeric member to form a metal electrode coated polymeric substrate wherein a polar field is applied to the metal electrode coated polymeric substrate;
- wherein said substrate remains stable at temperatures above about 100.degree. C. up to about the softening temperature of the polymeric member.
- 2. A thermally stable, piezoelectric and pyroelectric polymeric substrate comprising:
- (a) a polymeric member having a softening temperature greater than about 100.degree. C. wherein said member has the repeat unit; ##STR12## and (b) a metal electrode material deposited onto the polymeric member to form a metal electrode coated polymeric substrate wherein a polar field is applied to the metal electrode coated polymeric substrate;
- wherein said substrate remains stable at temperatures above about 100.degree. C. up to about the softening temperature of the polymeric member.
- 3. A thermally stable, piezoelectric and pyroelectric polymeric substrate comprising:
- (a) a polymeric member having a softening temperature greater than about 100.degree. C. wherein said member has the repeat unit; ##STR13## and (b) a metal electrode material deposited onto the polymeric member to form a metal electrode coated polymeric substrate wherein a polar field is applied to the metal electrode coated polymeric substrate;
- wherein said substrate remains stable at temperatures above about 100.degree. C. up to about the softening temperature of the polymeric member.
- 4. A thermally stable, piezoelectric and pyroelectric polymeric substrate comprising:
- (a) a polymeric member having a softening temperature greater than about 100.degree. C. wherein said member has the repeat unit; ##STR14## and (b) a metal electrode material deposited onto the polymeric member to form a metal electrode coated polymeric substrate wherein a polar field is applied to the metal electrode coated polymeric substrate;
- wherein said substrate remains stable at temperatures above about 100.degree. C. up to about the softening temperature of the polymeric member.
- 5. A thermally stable, piezoelectric and pyroelectric polymer film wherein said film remains stable at temperatures above 100.degree. C. to about 220.degree. C. comprising:
- a) a polymer film having a glass transition temperature of about 220.degree. C., wherein the polymer film has the structural repeat unit: ##STR15## b) a gold metal electrode material evaporated onto the polymer film to form a gold metal electrode coated polymer film wherein a polar field is applied to the gold metal electrode coated polymer film.
- 6. An article prepared from the thermally stable piezoelectric polymer film according to claim 5, wherein the article is selected from the group consisting of: an electromechanical transducer, a thermomechanical transducer, an accelerometer, an acoustic sensor, an infrared sensor, a pressure sensor, a vibration sensor, an impact sensor, an in-situ temperature sensor, an in-situ stress/strain sensor, a micro actuator, a switch, an adjustable fresnel lense, a speaker, a tunable reflector, a microphone, a tactile sensor, a weather sensor, a micropositioner, an ultrasonic device, a power generator and a hydrophone.
ORIGIN OF THE INVENTION
The invention described herein was made by employees of the United States Government and may be manufactured and used by or for the Government without payment of any royalties thereon or therefor.
US Referenced Citations (9)