THEORETICAL-STUDIES OF BORANAMINE AND ITS CONJUGATE BASE - COMPARISON OF THE B-N AND B-P PI-BOND ENERGIES

被引:19
作者
ALLEN, TL
FINK, WH
机构
[1] Department of Chemistry, University of California, Davis
关键词
D O I
10.1021/ic00072a014
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
To answer questions that have arisen about the relative strengths of the B-N and B-P pi bonds, we have investigated BH2NH2 and BH2NH- by the methods of ab initio molecular electronic structure theory, using basis sets of high quality, and we have characterized them with respect to-their molecular geometries, energies, dipole moments, normal vibrational modes, and harmonic vibrational frequencies. With the aid of the latter we have been able to resolve several disagreements in the literature on the interpretation of the BH2NH2 infrared absorption spectrum Aminoborane has two rotational transition states, one of C(s) symmetry at 32.4 kcal/mol above the planar ground state and one of C2v symmetry at 37.9 kcal/mol. The former has a BNH angle of 110.50 and an out-of-plane angle at nitrogen of 55.4-degrees. Surprisingly, it is the d orbitals of the nitrogen atom that give the C(s) transition state its lower energy and its approximately tetrahedral geometry at nitrogen. The BH2NH- anion has planar geometry and a BN bond length of 1.366 angstrom. it has an inversion transition state at 20.8 kcal/mol above the ground state, but it has no rotational transition state. Finally, comparison of BH2NH2 and BH2PH2 shows that the B-P pi bond is stronger than the B-N pi bond (40.5 versus 37.9 kcal/mol). Furthermore, it is shown that these bonds are overwhelmingly of ppi-ppi type.
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页码:4230 / 4234
页数:5
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