Halogenation of cubane under phase-transfer conditions: Single and double C-H-bond substitution with conservation of the cage structure

Citation
Aa. Fokin et al., Halogenation of cubane under phase-transfer conditions: Single and double C-H-bond substitution with conservation of the cage structure, J AM CHEM S, 123(9), 2001, pp. 1842-1847
Citations number
52
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
123
Issue
9
Year of publication
2001
Pages
1842 - 1847
Database
ISI
SICI code
0002-7863(20010307)123:9<1842:HOCUPC>2.0.ZU;2-M
Abstract
The first highly selective C-H chlorination, bromination. and iodination of cubane (1) utilizing polyhalomethanes as halogen sources under phase-trans fer (PT) conditions is described, Isomeric dihalocubanes with all possible combinations of chlorine, bromine, and iodine in ortho, meta, and para posi tions were also prepared by this method; m-dihalo products form preferentia lly. Ab initio and density functional theory (DFT) computations were used t o rationalize the pronounced differences in the reactions of 1 with halogen (Hal(.)) vs carbon-centered trihalomethyl (Hal(3)C(.)) radicals (Hal = Cl, Br). For Hal(3)C radicals the C-H abstraction pathway is less unfavorable (DeltaG(298)(++) = 21.6 kcal/mol for Cl3C. and 19.4 kcal/mol for Br3C. at B 3LYP/6-311+G**// B3LYP/6-31G**) than the fragmentation of the cubane skelet on via S(H)2-attack on one of the carbon atoms of 1 (DeltaG(298)(++) = 33.8 and 35.1 kcal/mol, respectively). In stark contrast, the reaction of 1 wit h halogen atoms preferentially follows the fragmentation pathway (DeltaG(29 8)(++) = 2.1 and 7.5 kcal/mol) and C-H abstraction is more unfavorable (Del taG(298)(++) = 4.6 and 12.0 kcal/mol). Our computational results nicely agr ee with the behavior of 1 under PT halogenation conditions (where Hal(3)C(. ) is involved in the activation step) and under free-radical photohalogenat ion with Hair (Della, E. W., et al. J.Am. Chern. Sec. 1992, 114, 10730). Th e incorporation of a second halogen atom preferentially in the meta positio n of halocubanes demonstrates the control of the regioselectivity by molecu lar orbital symmetry.