Claims
- 1. An electrochemical cell comprising:an anode; a cathode; a separator between the anode and the cathode, the separator allowing ionic conduction between the anode and the cathode but not allowing electrical conduction between the anode in the cathode, and a barrier configured, positioned, and dimensioned to be inserted between the anode and the cathode, wherein the barrier provides selective ionic isolation between the anode and cathode, or selective reduction of ionic conductivity between the anode and the cathode.
- 2. The electrochemical cell as in claim 1, wherein the anode comprises a metal fuel.
- 3. The electrochemical cell as in claim 1, wherein the cathode comprises an air diffusion electrode.
- 4. The electrochemical cell as in claim 1, wherein the separator comprises a membrane having electrolyte incorporated therein.
- 5. An electrochemical cell comprising:an anode; a cathode; a separator between the anode and the cathode, the separator allowing ionic conduction between the anode and the cathode but not allowing electrical conduction between the anode in the cathode, and a barrier configured, positioned, and dimensioned to be movable between a first position and a second position, the first position allowing ionic communication between the anode and the cathode, and the second position ionically isolating the anode and the cathode.
- 6. The electrochemical cell as in claim 5, wherein the anode comprises a metal fuel.
- 7. The electrochemical cell as in claim 5, wherein the cathode comprises an air diffusion electrode.
- 8. The electrochemical cell as in claim 5, wherein the separator comprises a membrane having electrolyte incorporated therein.
- 9. An electrochemical cell comprising:an anode; a cathode; a separator between the anode and the cathode, the separator allowing ionic conduction between the anode and the cathode but not allowing electrical conduction between the anode in the cathode, and a barrier configured, positioned, and dimensioned to be movable between a first position and a second position, the first position allowing ionic communication between the anode and the cathode, and the second position reducing ionic conductivity between the anode and the cathode.
- 10. The electrochemical cell as in claim 9, wherein the anode comprises a metal fuel.
- 11. The electrochemical cell as in claim 9, wherein the cathode comprises an air diffusion electrode.
- 12. The electrochemical cell as in claim 9, wherein the separator comprises a membrane having electrolyte incorporated therein.
- 13. An electrochemical cell comprising:an anode; a cathode; a separator between the anode and the cathode, the separator allowing ionic conduction between the anode and the cathode but not allowing electrical conduction between the anode in the cathode, a hinge configured, positioned, and dimensioned to isolate ionic communication between the anode and the cathodes, and a barrier configured, positioned, and dimensioned to be movable between a first position and a second position, the first position allowing ionic communication between the anode and the cathode, and the second position ionically isolating the anode and the cathode.
- 14. The electrochemical cell as in claim 13, wherein the anode comprises a metal fuel.
- 15. The electrochemical cell as in claim 13, wherein the cathode comprises an air diffusion electrode.
- 16. The electrochemical cell as in claim 13, wherein the separator comprises a membrane having electrolyte incorporated therein.
- 17. An electrochemical cell comprising:an anode; a cathode; a separator between the anode and the cathode, the separator allowing ionic conduction between the anode and the cathode but not allowing electrical conduction between the anode in the cathode, and a movable barrier configured, positioned, and dimensioned for insertion between the anode and the cathode, the movable barrier including a first end and a second end, the barrier movable between a first position and a second position, the first position including an ionic barrier positioned between a portion of the first end and the second end supported on at least one rail, and the second position including a portion exposing the rail but allowing ionic communication between the anode and the cathode.
- 18. The electrochemical cell as in claim 17, wherein the ionic barrier is flexible.
- 19. The electrochemical cell as in claim 17, wherein the portion of the rail having the ionic barrier attached thereto may be rolled in a storage region at the first end when the barrier is in the second position, and the portion of the rail not having the ionic barrier attached thereto may be rolled in a storage region at the second end when the barrier is in the first position.
- 20. The electrochemical cell as in claim 18, wherein the portion of the rail having the ionic barrier attached thereto may be rolled in a storage region at the first end when the barrier is in the second position, and the portion of the rail not having the ionic barrier attached thereto may be rolled in a storage region at the second end when the barrier is in the first position.
- 21. The electrochemical cell as in claim 17, wherein the rail comprises a shape memory alloy configured for movement between the first position and the second position.
- 22. The electrochemical cell as in claim 18, wherein the rail comprises a shape memory alloy configured for movement between the first position and the second position.
- 23. The electrochemical cell as in claim 19, wherein the rail comprises a shape memory alloy configured for movement between the first position and the second position.
- 24. The electrochemical cell as in claim 17, wherein the anode comprises a metal fuel.
- 25. The electrochemical cell as in claim 17, wherein the cathode comprises an air diffusion electrode.
- 26. The electrochemical cell as in claim 17, wherein the separator comprises a membrane having electrolyte incorporated therein.
RELATED APPLICATIONS
The present application claims priority to U.S. Provisional Patent Application Nos. 60/290,945 filed on May 14, 2001 and 60/313,764 filed on Aug. 21, 2001, both entitled “Metal Air Cell Incorporating Reaction Rate Control Systems”, both by Sadeg M. Faris, the entireties of which are both incorporated herein by reference.
US Referenced Citations (29)
Non-Patent Literature Citations (1)
Entry |
Shape Memory Alloy's by Darel E. Hodgeskin, Ming H. Wu and Robert J. Biereman, 1999. |
Provisional Applications (2)
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Number |
Date |
Country |
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60/313764 |
Aug 2001 |
US |
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60/290945 |
May 2001 |
US |