Partial insertion of the 9-BBN unit into the nido-B10 framework:: Preparation and structural characterization of (9-BBN)B10H13 and [(9-BBN)B10H12]-

被引:4
作者
Bridges, AN
Liu, JP
Kultyshev, RG
Gaines, DF
Shore, SG [1 ]
机构
[1] Ohio State Univ, Dept Chem, Columbus, OH 43210 USA
[2] Univ Wisconsin, Dept Chem, Madison, WI 53706 USA
关键词
D O I
10.1021/ic980171t
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Na[B10H13] reacts with 9-Br-BBN (9-BBN = 9-bora[3.3. 1]bicyclononane) in CH2Cl2 to produce (9-BBN)B10H13, 1, in high yield. Single-crystal X-ray diffraction analysis shows that the baron atom of the 9-BBN unit in 1 is partially inserted into the nido-B-10 structure through a highly asymmetric bridge between B(5) and B(6) on the B-10 cluster with distances of B(BBN)-B(5) = 1.740(6) Angstrom and B(BBN)-B(6) = 2.079(6) Angstrom. There is also an agostic interaction of the terminal H(5b) on B(5) with B(BBN). NMR studies confirm that this interaction is maintained in solution. Compound 1 is unstable in coordinating solvents, resulting in some cases in the cleavage of the 9-BBN unit from the decaborane skeleton. When 1 is placed in Et2O, NMR spectra suggest that (Et2O)-(9-BBN)B10H13, 2, is formed in which an Et2O molecule associates with the baron B(BBN) of the 9-BBN unit while the interactions of that boron with B(6) and with H(5b) are eliminated, leaving only a direct bond between B(BBN) and B(5). Reaction of 1 with "Proton Sponge", 1,8-bis(dimethylamino)naphthalene, in CH2Cl2 gives [PSH][(9-BBN)B10H12], 3, (PSH = protonated "Proton Sponge"). Single-crystal X-ray diffraction analysis of 3 indicates a structure similar to that of nido-[B11H14](-), With the baron of the 9-BBN unit approximately occupying a vertex site of the pentagonal face of a nido-B-11 cluster. The B(BBN) baron is inserted into a bridging site between B(5) and its crystallographically imposed mirror equivalent B(10') of the decaborane cluster with B(BBN)B(5)/B(BBN)-B(10') distances of 1.884(4) Angstrom and a B(5)-B(10') distance of 1.823(5) Angstrom. On the other hand the distance of the B(BBN) baron to B(6) and to the mirror equivalent B(9') is an abnormally long 2.142(4) Angstrom, which indicates that the B(BBN) boron is not fully accommodated in the formation of a nido-[B11H14](-) analogue. The novel interaction of the 9-BBN fragment with the decaborane cluster in 1 and the partial insertion of the 9-BBN moiety into the nido-B-10 unit observed in 3 are the first examples of sued interactions observed between a monoboron unit and a decaborane cluster. Crystal data: 1, Pbca (No. 61), a 11.924(3) Angstrom, b = 13.205(6) Angstrom, Na[B10H13] reacts with 9-Br-BBN (9-BBN = 9-bora[3.3. 1]bicyclononane) in CH2Cl2 to produce (9-BBN)B10H13, 1, in high yield. Single-crystal X-ray diffraction analysis shows that the baron atom of the 9-BBN unit in 1 is partially inserted into the nido-B-10 structure through a highly asymmetric bridge between B(5) and B(6) on the B-10 cluster with distances of B(BBN)-B(5) = 1.740(6) A and B(BBN)-B(6) = 2.079(6) Angstrom. There is also an agostic interaction of the terminal H(5b) on B(5) with B(BBN). NMR studies confirm that this interaction is maintained in solution. Compound 1 is unstable in coordinating solvents, resulting in some cases in the cleavage of the 9-BBN unit from the decaborane skeleton. When 1 is placed in Et2O, NMR spectra suggest that (Et2O)-(9-BBN)B10H13, 2, is formed in which an Et2O molecule associates with the baron B(BBN) of the 9-BBN unit while the interactions of that boron with B(6) and with H(5b) are eliminated, leaving only a direct bond between B(BBN) and B(5). Reaction of 1 with "Proton Sponge", 1,8-bis(dimethylamino)naphthalene, in CH2Cl2 gives [PSH][(9-BBN)B10H12], 3, (PSH = protonated "Proton Sponge"). Single-crystal X-ray diffraction analysis of 3 indicates a structure similar to that of nido-[B11H14](-), With the baron of the 9-BBN unit approximately occupying a vertex site of the pentagonal face of a nido-B-11 cluster. The B(BBN) baron is inserted into a bridging site between B(5) and its crystallographically imposed mirror equivalent B(10') of the decaborane cluster with B(BBN)B(5)/B(BBN)-B(10') distances of 1.884(4) Angstrom and a B(5)-B(10') distance of 1.823(5) A. On the other hand the distance of the B(BBN) baron to B(6) and to the mirror equivalent B(9') is an abnormally long 2.142(4) A, which indicates that the B(BBN) boron is not fully accommodated in the formation of a nido-[B11H14](-) analogue. The novel interaction of the 9-BBN fragment with the decaborane cluster in 1 and the partial insertion of the 9-BBN moiety into the nido-B-10 unit observed in 3 are the first examples of sued interactions observed between a monoboron unit and a decaborane cluster. Crystal data: 1, Pbca (No. 61), a 11.924(3) Angstrom, b = 13.205(6) Angstrom, c = 19.655(5) Angstrom, Z = 8; 3, Pnma (No. 62), a = 15.359(3) Angstrom, b = 13.932(3) Angstrom, c = 12.565(4) Angstrom, Z = 4.
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页码:3276 / 3283
页数:8
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