Claims
- 1. A high temperature rechargeable electrochemical power storage cell comprising a cell housing having an interior divided by a separator into an anode compartment and a cathode compartment, the anode compartment containing sodium as active anode material, the separator being a solid electrolyte conductor of sodium ions, the cathode compartment containing a sodium aluminium chloride molten salt electrolyte and containing a solid cathode comprising an electrolyte-permeable porous matrix impregnated with the molten salt electrolyte and which has solid active cathode material dispersed therein and is electronically conductive, the cell having an operating temperature at which the sodium and molten salt electrolyte are molten, the molten salt electrolyte comprising a substantially equimolar mixture of sodium chloride and aluminium chloride in which the proportion of aluminium chloride in all states of charge is at most 50% on a molar basis, the active cathode material comprising at least one transition metal selected from the group consisting of Fe, Ni, Cr, Co, Mn, Cu and Mo having, dispersed therein, at least one additive element selected from the group consisting of As and Sb, the atomic ratio of transition metal additive element in the active cathode material being 99:1-30:70, and the cell having a charged state in which the active cathode material is chlorinated.
- 2. A cell as claimed in claim 1, in which the active cathode material comprises a single transition metal and a single additive element, the transition metal additive element atomic ratio in the active cathode material being 80:20-50:50.
- 3. A cell as claimed in claim 1, in which the active cathode material comprises a transition metal selected from Fe, Ni and Cu, and an additive element selected from As and Sb.
- 4. A cell as claimed in claim 3, in which the active cathode material comprises at least one compound selected from Ni.sub.16 Sb, Ni.sub.3 Sb, Ni.sub.5 Sb.sub.2, Ni.sub.7 Sb.sub.3, NiSb, NiSb.sub.2, NiAs, FeSb, FeSb.sub.2, Cu.sub.2 Sb and CuSb.
- 5. A cell as claimed in claim 3, in which the active cathode material comprises Ni as its only transition metal and Sb as its only additive element.
- 6. A cell as claimed in claim 4, in which the active cathode material is selected from NiSb and Ni.sub.2 Sb.
- 7. A cell as claimed in claim 5, in which the cathode compartment contains a dopant selected from NaBr, NaI, SnCl.sub.2 and mixtures thereof, the cathode compartment in the fully charged state of the cell containing solid NaCl, and the dopant being present in a proportion amounting to 2-20% by mass of the active cathode material in its fully charged chlorinated state.
- 8. A cell as claimed in claim 5, in which the cathode compartment contains a cathode current collector, embedded in the matrix of the cathode, the current collector having an outer surface which comprises a metal which is more noble than nickel.
- 9. A cell as claimed in claim 8, in which the metal which is more noble than nickel is molybdenum.
- 10. A cell as claimed in claim 1, in which the cathode compartment contains NaF, present in a proportion amounting to 2-12% by mass of the active cathode material in its fully charged active state.
- 11. A cell as claimed in claim 1, in which the cathode compartment contains a sulphur-containing compound having a sulphur content which amounts to 0.3-5% by mass of the active cathode material in its fully charged state.
- 12. A method of making a high temperature rechargeable electrochemical power storage cell as claimed in claim 1, which method comprises loading, into an electrochemical cell cathode compartment separated from an anode compartment in a cell housing by a separator which is a solid electrolyte conductor of sodium ions, at least one additive element selected from the group consisting of As and Sb, admixed with and dispersed in at least one transition metal selected from the group consisting of Fe, Ni, Cr, Co, Mn, Cu and Mo, to provide a transition metal active cathode component and an additive element active cathode component in the cathode compartment which are present in a transition metal:additive element atomic ratio of 99:1-30:70, said components being loaded into the cathode compartment together with either a sodium aluminium chloride molten salt electrolyte having a proportion of aluminium chloride which is at most 50% thereof on a molar basis, or a precursor of said molten salt electrolyte.
Priority Claims (4)
Number |
Date |
Country |
Kind |
93/2406 |
Apr 1993 |
ZAX |
|
93/2650 |
Apr 1993 |
ZAX |
|
93/3459 |
May 1993 |
ZAX |
|
93/9121 |
Dec 1993 |
ZAX |
|
Parent Case Info
This application is a continuing application of U.S. Ser. No. 08/215,844, filed Mar. 22, 1994, now abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (5)
Number |
Date |
Country |
2159661 |
Dec 1985 |
GBX |
2164786 |
Mar 1986 |
GBX |
2191332 |
Dec 1987 |
GBX |
2191333 |
Dec 1987 |
GBX |
2226692 |
Apr 1990 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
215844 |
Mar 1994 |
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