Claims
- 1. In an electrolytic cell having three elements, namely two electrodes and an electrolyte therebetween, the improvment wherein one of said elements is comprised of a canal clathrate complex of benzophenone or substituted benzophenone and a polyhalide salt of a cation from the group consisting of K.sup.+, Na.sup.+, Cs.sup.+, Li.sup.+, NH.sub.4.sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons.
- 2. An improved electrolytic cell as recited in claim 1, wherein said canal clathrate complex has the formula (Benzophenone).sub.9 (MI).sub.2 I.sub.7 CHCl.sub.3, wherein M represents said cation.
- 3. Method for transporting cations comprising passing said cations through a canal clathrate complex of benzophenone and a polyhalide salt of a cation from the group consisting of Li.sup.+, K.sup.+, Na.sup.+, Cs.sup.+, NH.sub.4.sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons.
- 4. Electrolytic cell comprising a cation source and a cation receiver and, disposed therebetween, a solid electrolyte comprising a canal clathrate complex of benzophenone and a polyiodide salt of a cation from the group consisting of Li.sup.+, K.sup.+, Na.sup.+, Cs.sup.+, NH.sub.4.sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons.
- 5. Electrolytic cell comprising a solid state cation conductor comprising a canal clathrate complex of benzophenone and a polyiodide salt of a cation from the group consisting of Li.sup.+, K.sup.+, Na.sup.+, Cs.sup.+, NH.sub.4.sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons, in cation conductive association on one side thereof with a source of cations which said cation conductor is adapted to transport and on the other side thereof with a receiver for said cations.
- 6. Electrolytic cell having an electrolyte and two electrodes disposed on opposed sides thereof, one of said electrodes comprising a metal and the second of said electrodes comprising a canal clathrate complex of benzophenone and a polyiodide salt of a cation from the group consisting of Li.sup.+, K.sup.+, Na.sup.+, Cs.sup.+, NH.sub.4 .sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons.
- 7. Electrolytic cell, as recited in claim 6, wherein said cell is a primary battery
- 8. Electrolytic cell, as recited in claim 7, wherein said first electrode is silver or lithium.
- 9. Electrolytic cell, as recited in claim 8, wherein second electrode is a composition having the formula (Benzophenone).sub.9 (MI).sub.2 I.sub.7 CHCl.sub.3, wherein M represents said cation.
- 10. Method of making an electrolytic cell comprising placing a metal first electrode surface in contact with a second electrode surface, said second electrode consisting of a canal clathrate complex of benzophenone and a polyiodide salt of a cation from the group consisting of Li.sup.+, K.sup.+, Na.sup.+, Cs.sup.+, NH.sub.4.sup.+, Rb.sup.+, and R.sub.4 N.sup.+, where R is an alkyl group of less than five carbons.
- 11. Method as recited in claim 10 wherein said metal is silver or lithium and said salt is silver or lithium iodide.
Government Interests
The government has rights in this invention pursuant to Grant No. DMR 77-01055 awarded by the National Science Foundation.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3773557 |
Mead |
Nov 1973 |
|
4148975 |
Schneider et al. |
Apr 1979 |
|