Claims
- 1. A method for the preparation of decaborane-14(B.sub.10 H.sub.14) through the conversion of B.sub.5 H.sub.9 to [N(CH.sub.3).sub.4 ][B.sub.9 H.sub.14 ], the hydride ion abstraction reaction of [N(CH.sub.3).sub.4 ][B.sub.9 H.sub.14 ], by a boron trihalide to form B.sub.10 H.sub.14, and the separation and recovery of B.sub.10 H.sub.14, in pure form by a sublimation process, said method comprising completing steps (i-IX) as set forth hereinbelow and relating to said conversion, completing steps (X-XIII) as set forth hereinbelow and relating to said hydride ion abstraction reaction, and completing steps (XIV-XV) as set forth hereinbelow and relating to said separation and recovery as follows:
- (i) adding to a first reaction vessel provided with a means for stirring and while maintained in a dry box of N.sub.2 atmosphere, a predetermined weight of NaH and [(CH.sub.3).sub.4 N][Cl] to provide a 1:1 molar ratio of said NaH and said [(CH.sub.3).sub.4 N][Cl];
- (ii) removing said first reaction vessel from said dry box and attaching said first reaction vessel to a vacuum means for removing of dry box N.sub.2 ;
- (iii) condensing a predetermined volume of dry tetrahydrofuran into said first reaction vessel maintained at about -78.degree. C. while condensing of said dry tetrahydrofuran into said first reaction vessel to form a reaction mixture;
- (iv) subjecting said first reaction vessel and said reaction mixture to a liquid N.sub.2 Dewar container for cooling prior to condensing a predetermined volume of B.sub.5 H.sub.9 measured at 0.degree. C. into said reaction mixture, said predetermined volume of said B.sub.5 H.sub.9 providing a 2 molar ratio of said B.sub.5 H.sub.9 to said 1:1 molar ratio of said NaH and [N(CH.sub.3).sub.4 ][Cl];
- (v) warming said first reaction vessel and said reaction mixture to a room temperature of about 26.degree. C.-27.degree. C. and stirring said reaction mixture vigorously for about 12 hours to complete a reaction period to form the solid reaction products [N(CH.sub.3).sub.4 ][B.sub.9 H.sub.14 ] and NaCl in said reaction mixture;
- (vi) cooling said first reaction vessel and said solid reaction products to -196.degree. C. and removing hydrogen and other volatiles;
- (vii) warming said first reaction vessel and said solid reaction products to about 0.degree. C. while removing said solvent under vacuum from said solid reaction products [N(CH.sub.3).sub.4 ][B.sub.9 H.sub.14 ]and NaCl;
- (viii) transferring said solid reaction products to a second reaction vessel in a dry box, said second reaction vessel having a smaller capacity than said first reaction vessel;
- (ix) removing said second reaction vessel from dry box and evacuating said second reaction vessel of dry box N.sub.2 ;
- (x) condensing a predetermined molar volume of a boron trihalide selected from BCl.sub.3 freed from HCl or BBr.sub.3 freed from HBr into said second reaction vessel maintained at -196.degree. C., said predetermined molar volume of said boron trihalide being in ratio of 1:2 to said condensed B.sub.5 H.sub.9 ;
- (xi) warming contents of said second reaction vessel to about 11.degree. C. to room temperature and reacting while stirring said contents of said second reaction vessel for a predetermined time period of about 4 hours to form reaction products including B.sub.10 H.sub.14 by hydride ion abstraction;
- (xii) cooling said second reaction vessel and said reaction products including B.sub.10 H.sub.14 and removing hydrogen;
- (xiii) warming said second reaction vessel to a room temperature range of about 26.degree. C.-27.degree. C. and removing trace of volatile products by vacuum pumping;
- (xiv) transferring said second reaction vessel to a dry box; and,
- (xv) separating said B.sub.10 H.sub.14 by sublimation from said second reaction vessel and recovering said B.sub.10 H.sub.14 in pure form.
- 2. The method of claim 1 wherein said boron trihalide selected is BCl.sub.3 for completing said reaction in said second reaction vessel and wherein said B.sub.10 H.sub.14 is separated from said second reaction vessel by a sublimation process which comprises slowly warming said second reaction vessel and said solid reaction products to about 110.degree. C. while said second reaction vessel is connected to a sublimator unit maintained at about 0.degree. C. while the entire system of said second reaction vessel and said sublimator unit is maintained under dynamic vacuum.
- 3. The method of claim 1 wherein said boron trihalide selected is BBr.sub.3 for completing said reaction in said second reaction vessel and wherein said B.sub.10 H.sub.14 is separated from said second reaction vessel by a sublimation process which comprises slowly warming said second reaction vessel and said solid reaction products to about 110.degree. C. while said second reaction vessel is connected to a sublimator unit maintained at about 0.degree. C. while the entire system of said second reaction vessel and said sublimator unit is maintained under dynamic vacuum.
- 4. The method of claim 1 wherein said separation by sublimation employs a stream of N.sub.2 gas for passing over the subliming B.sub.10 H.sub.14 at 110.degree. C. and wherein said B.sub.10 H.sub.14 is trapped in a water-cooled collector.
DEDICATORY CLAUSE
The invention described herein was made in the course of or under a contract or subcontract thereunder with the Government; therefore, the invention described herein 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 (4)