Claims
- 1. An electrode material suitable for use in forming a hydrogen electrode of an energy accumulator based on lanthanum and nickel, and consisting of an alloy corresponding substantially to the formula LaNi.sub.5 in which one of the components La and Ni or both of them are partially substituted by a metal M selected from group VI or VII of the periodic table of elements, in an atomic proportion from 0.1 to 2 with respect to the nickel.
- 2. An electrode material according to claim 1, wherein the partial substitution relates essentially to nickel.
- 3. An electrode material according to claim 2, comprising a ternary alloy having the formula
- LaNi.sub.x-y M.sub.y
- wherein M is a metal of the VI or VII group of the periodic table of elements, x is a number from 4.7 to 5.5 and y is a number from 0.1 to b 2.
- 4. An electrode material according to claim 3, wherein y is a number from 0.5 to 1.
- 5. An electrode material suitable for use in forming a hydrogen electrode of an energy accumulator based on lanthanum and nickel, and consisting of an alloy corresponding substantially to the formula LaNi.sub.5 in which one of the components La and Ni or the both are partially substituted by a metal M of group VII of the periodic table of elements in an atomic proportion from 0.1 to 2 with respect to the nickel, further including at least another element M' partially substituting the lanthanum and/or nickel selected from the groups Ia, II, III, IV and V of the periodic table of elements.
- 6. An electrode material according to claim 5 corresponding substantially to the formula
- La.sub.a Ni.sub.x-y-b M.sub.y M'
- wherein M' is a metal selected from those of groups Ia, II, III, IV and V of the periodic table of elements, x is a number from 4.7 to 5.5, Y is a number from 0.1 to 2, a is a number from 0.8 to 1 and b is a number from 0.1 to 1.
- 7. An electrode material according to claim 5, wherein the substitution by M' relates essentially to lanthanum, M' being chosen from the IIb, IIIa and IVa groups.
- 8. An electrode material according to claim 6, wherein the substitution by M' relates essentially to nickel, M' being chosen from the Ia, IIIb and Va groups.
- 9. An electrode material according to any one of claims 5 to 7, wherein M' represents aluminium.
- 10. Electrode material according to claim 1, wherein M is manganese.
- 11. Lanthanum and nickel based ternary alloys selected from the group consisting of La.sub.1.00 Ni.sub.4.50 Mn.sub.0.50, and La.sub.1.00 Ni.sub.4.25 Mn.sub.0.75, alloys.
- 12. Lanthanum and nickel based quaternary alloys selected from the group consisting of La.sub.1.00 Ni.sub.4.25 Al.sub.0.50 Mn.sub.0.25, La.sub.1.00 Ni.sub.4.00 Al.sub.0.75 Mn .sub.0.25 and La.sub.1.00 Ni.sub.4.25 Cr.sub.0.25 Al.sub.0.5 alloys.
- 13. Hydrided electrode materials according to claim 1.
- 14. A hydrogen electrode comprising a material according to claim 1.
- 15. Hydrogen electrode according to claim 14, characterized in that it comprises a material having on at least a part of its surface compounds which, while authorizing passage of hydrogen during the cathodic charge, slow down the desorption of the adsorbed hydrogen.
- 16. An electrochemical energy accumulator of the alkaline electrolyte type including a negative electrode based on lanthanum and nickel, said negative electrode comprising an alloy, corresponding substantially to the formula LaNi.sub.5 in which one of the components La and Ni or both of them are partially substituted by a metal M selected from group VI or VII of the periodic table of elements, in an atomic proportion from 0.1 to 2 with respect to the nickel.
- 17. A process for preparing an alloy corresponding substantially to the formula LaNi.sub.5 in which one of the components La and Ni or both of them are partially substituted by a metal M selected from group VI or VII of the periodic table of elements, in an atomic proportion from 0.1 to 2 with respect to the nickel which comprises mixing the alloy constitutents in melted state, by using a cooled down crucible for avoiding eventual contamination of the alloy by the crucible constitutents, cooling the mixture of solidify it and subjecting the solidified mixture to a re-heating operation at a temperature between 600.degree. C. and 1300.degree. C.
- 18. An accumulator according to claim 16 wherein the partial substitution relates essentially to nickel.
- 19. An accumulator according to claim 16, which includes a ternary alloy having the formula LaNi.sub.x-y M.sub.y wherein M is a metal of the VI or VII group of the periodic table of elements, x is a number from 4.7 to 5.5 and y a number from 0.1 to 2.
- 20. An accumulator according to claim 16, including an alloy corresponding substantially to the formula LaNi.sub.5 in which one of the compoennts La and Ni or the both are partially substituted by a metal M of group VII of the periodic table of elements in an atomic proportion form 0.1 to 2 with respect to the nickel further comprising at least another element M' partially substituting the lanthanum and/or nickel selected from the groups Ia, II, III, IV and V of the periodic table.
- 21. An accumulator according to claim 20 which includes a quaternary alloy having the formula
- La.sub.a Ni.sub.x-y-b M.sub.y M'.sub.b
- wherein M' is a metal selected from those of groups Ia, II, III, IV, and V of the periodic table of elements, x is a number from 4.7 to 5.5, y is a number from 0.1 to 2, a is a number from 0.8 to 1 and b is a number from 0.1 to 1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
77 23812 |
Aug 1977 |
FRX |
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Parent Case Info
This is a continuation of the application Ser. No. 930,219 filed Aug. 2, 1978, abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4107405 |
Guegen et al. |
Aug 1978 |
|
4154364 |
Hagiwara et al. |
May 1979 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
930219 |
Aug 1978 |
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