ESR spectroscopy has been used to characterise reactions of the aminyl–borane radicals RNH→BH3(2) in solution. The relative rates of β- hydrogen -atom transfer from [2; R = H, Me, Bus, ButC(H)Me, or But] to 2,3-dimethylbut-2-ene and to furan depend on the nature of the group R, confirming that H-atom transfer is bimolecular and does not involve prior β-scission of (2) to give a free hydrogen atom. Because of favourable polar factors, β-H-atom transfers from (2) to the allylsilanes Me3SiCH2CHCH2 and Me3SiCH2CMeCH2 are particularly rapid. The cycloalkylaminyl–borane radicals (2; R = cyclo-C3H5 or cyclo-C4H7) undergo rapid ring opening at 282 K, while no spectroscopic evidence was found for opening of the cyclopentyl or cyclohexyl analogues. Alkylaminyl–borane radicals transfer a β-hydrogen atom to hexamethyldisilane to bring about homolytic Si–Si bond cleavage. These radicals also react with trialkylsilanes R3SiH to give R3Si˙. Approximate absolute rate coefficients for the reactions of (2) have been determined at 282 or 292 K. Of the primary amine–boranes investigated, s-butylamine– and cyclopentylamine–boranes appear to be the most suitable complexes for ESR spectroscopic work in liquid solution.
No takes yet. Share an insight, caveat, or question.
Johnson et al. (1990) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: