Claims
- 1. A polymeric actuator comprising an ion-exchange resin product containing an alkylammonium ion as a counter ion and metal electrodes which are formed on the surface of the ion-exchange resin product and are insulated from each other, said polymeric actuator operating as an actuator by applying a potential difference between the metal electrodes when the ion-exchange resin product is in the water-containing state to allow the ion-exchange resin product to undergo bending or deformation.
- 2. The polymeric actuator as claimed in claim 1, wherein the alkylammonium ions are alkylammonium ions containing at least ions represented by the following formula (1):
- 3. The polymeric actuator as claimed in claim 1, wherein the alkylammonium ion is represented by the following formula (1):
- 4. The polymeric actuator as claimed in claim 1, wherein the ion represented by the formula (1) is CH3N+H3, C2H5N+H3, (CH3)2N+H2, (C2H5)2N+H2, (C4H9)2N+H2, (C5H11)2N+H2, (CH3)3N+H, (C2H5)3N+H, (C4H9)3N+H, (C5H11)3N+H, (CH3)4N+, (C2H5)4N+, (C3H7)4N+, (C4H9)4N+, H3N+(CH2)4N+H3, H2C═CHCH2N+HCH3, H3N+(CH2)4N+H2(CH2)4N+H3, HC≡CCH2N+H2, CH3CH(OH)CH2N+H3, H3N+(CH2)5OH, H3N+CH(CH2OH)2, (HOCH2)2C(CH2N+H3)2, C2H5OCH2CH2N+H3,
- 5. The polymeric actuator as claimed in claim 2, wherein the ion represented by the formula (1) is CH3N+H3, C2H5N+H3, (CH3)2N+H2, (C2H5)2N+H2, (C4H9)2N+H2, (C5H11)2N+H2, (CH3)3N+H, (C2H5)3N+H, (C4h9)3N+H, (C5H11)3N+H, (CH3)4N+, (C2H5)4N+, (C3H7)4N+, (C4H9)4N+, H3N+(CH2)4N+H3, H2C═CHCH2N+HCH3, H3N+(CH2)4N+H2 (CH2)4N+H3, HC≡CCH2N+H2, CH3CH(OH)CH2N+H3, H3N+(CH2)5OH, H3N+CH(CH2OH)2, (HOCH2)2C(CH2N+H3)2, C2H5OCH2CH2N+H3,
- 6. The polymeric actuator as claimed in claim 3, wherein the ion represented by the formula (1) is CH3N+H3, C2H5N+H3, (CH3)2N+H2, (C2H5)2N+H2, (C4H9)2N+H2, (C5H11)2N+H2, (CH3)3N+H, (C2H5)3N+H, (C4H9)3N+H, (C5H11)3N+H, (CH3)4N+, (C2H5)4N+, (C3H7)4N+, (C4H9(4N+, H3N+(CH2)4N+H3, H2C═CHCH2N+HCH3, H3N+(CH2)4N+H2 (CH2)4N+H3, HC≡CCH2N+H2, CH3CH (OH) CH2N+H3, H3N+(CH2)5OH, H3N+CH(CH2OH)2, (HOCH2)2C(CH2N+H3)2, C2H5OCH2CH2N+H3,
- 7. A polymeric actuator produced by repeatedly conducting the following steps (i) to (iii) to form metal electrodes ranging from a surface of an ion-exchange resin product to the inside thereof:
(i) a step of allowing said ion-exchange resin product to adsorb a metal complex in an aqueous solution (adsorption step); (ii) a step of reducing said metal complex adsorbed on said ion-exchange resin product by a reducing agent to deposit a metal on the surface of said ion-exchange resin product (deposition step); and (iii) a step of washing said ion-exchange resin product having said deposited metal (washing step),
such that the deposition of the metal is conducted on the surface of the ion-exchange resin product and further in the resin product, and the reduction of the metal complex forming metal electrodes is carried out by immersing the ion exchange resin product adsorbing the metal complex thereon in an aqueous solution containing a reducing agent.
- 8. A polymeric actuator having metal electrodes ranging from a surface of an ion-exchange resin product to an inside thereof.
- 9. A polymeric actuator having metal electrodes ranging from a surface of an ion-exchange resin product to an inside thereof,
in which deposition of said metal is conducted not only on said surface of said ion-exchange resin product but also further inside said resin product.
- 10. The polymeric actuator according to claim 7, wherein a treatment is carried out prior to the formation of the metal electrode and said treatment is carried out by immersing an ion-exchange resin product in an alcohol such as methanol or ethanol.
- 11. A polymeric actuator comprising an ion-exchange resin product being a plate or a film, wherein the ratio of the thickness (a1) of the metal electrode formed on the ion-exchange resin product to the thickness (b1) of the ion-exchange resin product including the metal electrode (a1/b1) is in the range of 0.03 to 0.40.
- 12. A polymeric actuator comprising an ion-exchange resin product being a cylinder with the metal electrode formed on an outer surface thereof, wherein the ratio of the thickness (a2) of the metal electrode formed on the ion-exchange resin product to the thickness (b2) of the ion-exchange resin product including the metal electrode (a2/b2) is in the range of 0.02 to 0.70.
- 13. A polymeric actuator comprising an ion-exchange resin product being a cylinder with the metal electrode formed on an inner surface thereof, wherein the ratio of the thickness (a3) of the metal electrode formed on the ion-exchange resin product to the thickness (b3) of the ion-exchange resin product including the metal electrode (a3/b3) is in the range of 0.02 to 0.70.
- 14. A polymeric actuator comprising an ion-exchange resin product being a cylinder with the metal electrode formed on both an inner and outer surface thereof, wherein the ratio of the thickness (c) of the cylindrical ion-exchange resin product excluding the metal electrode to the thickness (b4) of the cylindrical ion-exchange resin product including the metal electrode (c/b4) is in the range of 0.20 to 0.95.
- 15. A polymeric actuator comprising an ion-exchange resin product, wherein said ion-exchange resin product has ion-exchange capacity of 0.8 to 3.0 meq/g.
Priority Claims (2)
Number |
Date |
Country |
Kind |
39121/1998 |
Feb 1998 |
JP |
|
84495/1998 |
Mar 1998 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of co-pending U.S. patent application Ser. No. 09/253,638 filed Feb. 19, 1999, entitled “Process for Producing Polymeric Actuators”, which claims the benefit of Japanese Patent Application No. 039121/1998 filed Feb. 20, 1998, and Japanese Patent Application No. 084495/1998 filed Mar. 30, 1998.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09253638 |
Feb 1999 |
US |
Child |
10866965 |
Jun 2004 |
US |