Stability and Three-Dimensional Aromaticity ofcloso-NBn-1HnAzaboranes,n= 5−12
- 1 June 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 42 (13) , 4190-4203
- https://doi.org/10.1021/ic0340783
Abstract
Computations on all the possible positional isomers of the closo-azaboranes NBn-1Hn (n = 5−12) reveal substantial differences in the relative energies. Data at the B3LYP/6-311+G** level of density functional theory (DFT) agree well with expectations based on the topological charge stabilization, with the qualitative connectivity preferences of Williams, and with the Jemmis−Schleyer six interstitial electron rules. The energetic relationship involving each of the most stable positional isomers, 1-NB4H5, NB5H6, 2-NB6H7, 1-NB7H8, 4-NB8H9, 1-NB9H10, 2-NB10H11, NB11H12, was based on the energies (ΔH) of the model reaction: NBH2 + (n−1)BHincrement → NBnHn+1 (n = 4−11). This evaluation shows that the stabilities of closo-azaboranes NBn-1Hn (n = 5−12) increase with increasing cluster size from 5 to 12 vertexes. The “three-dimensional aromaticity” of these closo-azaboranes NBn-1Hn (n = 5−12) is demonstrated by their the nucleus-independent chemical shifts (NICS) and their magnetic susceptibilities (χ), which match one another well. However, there is no direct relationship between these magnetic properties and the relative stabilities of the positional isomers of each cluster. As expected, other energy contributions such as topological charge stabilization and connectivity can be equally important.Keywords
This publication has 85 references indexed in Scilit:
- Is Kekulene Really Superaromatic?Angewandte Chemie International Edition in English, 1996
- New Weakly Coordinating Anions. III. Useful Silver and Trityl Salt Reagents of Carborane AnionsJournal of the American Chemical Society, 1994
- A new weakly coordinating anion: approaching the silylium (silicenium) ionJournal of the Chemical Society, Chemical Communications, 1993
- The structure of octahydrooctaborate(2-) in solution. Is nonahydrooctaborate(1-) also involved? An ab initio/IGLO/NMR studyInorganic Chemistry, 1992
- closo‐Azadodecaborane, NB11H12Angewandte Chemie International Edition in English, 1991
- Predictions of relative stabilities among series of carborane isomers by the criterion of topological charge stabilizationJournal of the American Chemical Society, 1986
- A generalized total .pi.-energy index for a conjugated hydrocarbonThe Journal of Organic Chemistry, 1976
- Detection of polytopal isomers in the solution state. I. Eight-atom familyJournal of the American Chemical Society, 1973
- New heteroborane, 1-thia-closo-decarborane(9) B9H9SJournal of the American Chemical Society, 1973
- Structure lectronique du formald hyde et de l'ion formiateTheoretical Chemistry Accounts, 1967