Claims
- 1. A process for the conversion of magnesium borohydride dietherate or the deuterated analog dietherate thereof to the thermally stable compound magnesium borohydride di- or tri- ammoniate or the deuterated analogs thereof comprising:
- (i) providing a stoichiometric excess amount of a dietherate selected from the group consisting of
- Mg(BH.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O and Mg(BD.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O,
- wherein D is deuterium and X is a numeral ranging from about 2 to about 2.5, in a reaction solvent selected from benzene and diethyl ether, said reaction solvent being benzene when said dietherate is to be converted to Mg(BH.sub.4).sub.2.2NH.sub.3, Mg(BD.sub.4).sub.2.2NH.sub.3 or Mg(BD.sub.4).sub.2.2ND.sub.3 said reaction solvent being diethyl ether when said dietherate is to be converted to Mg(BH.sub.4).sub.2.3NH.sub.3, Mg (BD.sub.4).sub.2.3NH.sub.3 or Mg(BD.sub.4).sub.2.3ND.sub.3 ;
- (ii) contacting said dietherate in said reaction solvent with an amount from about 90 to about 95% of the stoichiometric amount of gaseous ammonia or its deuterated analog to form a precipitated solid compound which is magnesium borohydride di-or tri- ammoniate or the deuterated analogs thereof;
- (iii) separating said precipitated solid compound and washing said precipitated solid compound with said reaction solvent which is diethyl ether when said precipitated solid compound is magnesium borohydride triammoniate or the deuterated analogs thereof and washing said precipitated solid compound with said reaction solvent which is benzene when said precipitated solid compound is magnesium borohydride diammoniate or the deuterated analog thereof; and,
- (iv) recovering said magnesium borohydride di- or tri-ammoniate or the deuterated analogs thereof and drying under vacuum at ambient temperature.
- 2. The process of claim 1 wherein said X of said Mg(BH.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O or said Mg(BD.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O has a numeral value equal to about 2.5 and wherein said amount of about 4.18 millimoles of said Mg(BH.sub.4).sub.2.2.5(C.sub.2 H.sub.5).sub.2 O or said Mg(BD.sub.4).sub.2.2.5(C.sub.2 H.sub.5).sub.2 O is contained in about 20 milliliters of the reaction solvent diethyl ether, said stoichiometric amount of gaseous ammonia or its deuterated analog employed in said contacting step is about 7.78 millimoles using high-vacuum techniques, and wherein said precipitated solid compound separated is Mg(BH.sub.4).sub.2.3NH.sub.3 or the deuterated analogs, Mg(BD.sub.4).sub.2.3NH.sub.3 or Mg(BD.sub.4).sub.2.3ND.sub.3.
- 3. The process of claim 1 wherein said X of said Mg(BH.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O or said Mg(BD.sub.4).sub.2.X(C.sub.2 H.sub.5).sub.2 O has a numeral value equal to about 2.5 and wherein said amount of about 4.18 millimoles of said Mg(BH.sub.4).sub.2.2.5(C.sub.2 H.sub.5).sub.2 O or said Mg(BD.sub.4).sub.2.2.5(C.sub.2 H.sub.5).sub.2 O is contained in about 20 milliliters of the reaction solvent benzene, said stoichiometric amount of gaseous ammonia or its deuterated analog employed in said contacting step is about 7.85 millimoles using high-vacuum techniques, and wherein said precipitated solid compound separated is Mg(BH.sub.4).sub.2.2NH.sub.3 or the deuterated analogs, Mg(BD.sub.4).sub.2.2NH.sub.3 or Mg(BD.sub.4).3ND.sub.3.
DEDICATORY CLAUSE
The invention described herein was made in the course of or under Contract DAAH01-82-C-A235 or subcontract thereunder with the Government and may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to us of any royalties thereon.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
2855348 |
Huff et al. |
Oct 1958 |
|
Non-Patent Literature Citations (3)
Entry |
V. N. Konoplev and J. A. Silina, Zr. Neorg. Khim., 30(5), 1125-1128 (1985). |
Earl L. Muettertres, Boron Hydride Chemistry, Academic Press, New York, 1, pp. 441 & 445. |
V. N. Konoplev, "Synthesis of Magnesium Tetrahydridoborate", Russian J. Inorg. Chem., 25(7), 1980. |