Claims
- 1. A nanocrystalline powder of formula Mg.sub.2-x Ni.sub.1+x, x ranging between -0.3 and +0.3, said powder consisting of crystallites having a grain size lower than 100 nm.
- 2. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 1, wherein the grain size of the crystallites is lower than 30 nm.
- 3. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 1, obtained by grinding an alloy of formula Mg.sub.2-x Ni.sub.1+x.
- 4. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 1, obtained by grinding under an inert atmosphere a Mg powder with a Ni powder in such amounts so as to obtain the requested alloy, said grinding allowing the preparation in a mechanical way of said crystallites of Mg.sub.2-x Ni.sub.1+x from said Mg and Ni powders, and simultaneously allowing the reduction of grain size to the requested value.
- 5. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 3, wherein said crystallites also includes at least one additional metal which does not modify the crystalline structure of said crystallites.
- 6. The powder of formula Mg.sub.2-x Ni.sub.+x according to claim 4, wherein said crystallites also includes at least one additional metal which does not modify the crystalline structure of said crystallites.
- 7. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 6, wherein said at least one additional metal is selected from the group consisting of Cu, Al, Co, La, Pd, Zn and Fe.
- 8. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 7, wherein at least one additional metal is Cu.
- 9. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 1, wherein aid crystallites are covered with clusters of a hydrogen dissociation catalyst material.
- 10. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 9, wherein said catalyst material is selected from the group consisting of Pd, Pt, Ir and Rh.
- 11. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 10, wherein said catalyst material is Pd.
- 12. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 4, wherein said crystallites are covered with clusters of a hydrogen dissociation catalyst material.
- 13. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 12, wherein said catalyst material is selected from the group consisting of Pd, Pt, Ir and Rh.
- 14. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 13, wherein said catalyst material is Pd.
- 15. A nanocrystalline powder of an alloy of Ni with another metal selected from the group consisting of Mg, La, Be and Li, said powder consisting of crystalline particles having a grain size lower than 100 nm and a crystalline structure allowing hydrogen absorption.
- 16. The powder of an alloy of Ni according to claim 15, wherein said other metal is La and said powder consists of crystalline particles of LaNi.sub.5 having a grain size lower than 100 nm.
- 17. The powder of an alloy of Ni according to claim 15, wherein the other metal is Be.
- 18. The powder of an alloy of Ni according to claim 15, wherein the other metal is Li.
- 19. The powder of an alloy of Ni according to claim 15, obtained by grinding under an inert atmosphere of a Ni powder with a powder of the other metal in such amounts so as to obtain the requested alloy, said grinding allowing the preparation in a mechanical way of said crystallites of said alloy from said powders of Ni and of the other metal, and simultaneously allowing the reduction of grain size to the requested value.
- 20. The powder of formula Mg.sub.2-x Ni.sub.1+x according to claim 1, which is Mg.sub.2 Ni.
Priority Claims (1)
Number |
Date |
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2117158 |
Mar 1994 |
CAX |
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Parent Case Info
This is a divisional of application Ser. No. 08/772,862, filed Dec. 26, 1996, now U.S. Pat. No. 5,763,363, which is a continuation of application Ser. No. 08/387,457, filed Feb. 13, 1995, now abandoned.
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Divisions (1)
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Number |
Date |
Country |
Parent |
772862 |
Dec 1996 |
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Continuations (1)
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Number |
Date |
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Parent |
387457 |
Feb 1995 |
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