School of Chemistry, EaStChem, University of St. Andrews, St. Andrews, Fife KY16 9ST, United Kingdom.
J Am Chem Soc. 2010 Feb 24;132(7):2350-8. doi: 10.1021/ja909502q.
N-Heterocyclic carbene boranes (NHC-boranes) are a new "clean" class of reagents suitable for reductive radical chain transformations. Their structures are well suited for their reactivity to be tuned by inclusion of different NHC ring units and by appropriate placement of diverse substituents. EPR spectra were obtained for the boron-centered radicals generated on removal of one of the BH(3) hydrogen atoms. This spectroscopic data, coupled with DFT computations, demonstrated that the NHC-BH(2)* radicals are planar pi-delocalized species. tert-Butoxyl radicals abstracted hydrogen atoms from NHC-boranes more than 3 orders of magnitude faster than did C-centered radicals, although the rate decreased markedly for sterically shielded NHC-BH(3) centers. Combinations of two NHC-boryl radicals afforded 1,2-bis-NHC-diboranes at rates which also depended strongly on steric shielding. The termination rate increased to the diffusion-controlled limit for sterically unhindered NHC-boryls. Bromine atoms were rapidly transferred to imidazole-based NHC-boryl radicals from alkyl, allyl, and benzyl bromides. Chlorine-atom abstraction was, however, much less efficient and only observed for sterically unhindered NHC-boryls reacting with allylic and benzylic chlorides. For an NHC-borane containing a bulky thexyl substituent at boron, the tertiary H atom of the thexyl group was selectively removed. The resulting beta-boron-containing alkyl radical rapidly underwent beta scission of the B-C bond with production of an NHC-boryl radical and an alkene.
N-杂环卡宾硼烷(NHC-硼烷)是一类新型的“清洁”试剂,适合用于还原自由基链式转化。它们的结构非常适合通过包含不同的 NHC 环单元和适当放置各种取代基来调节其反应性。通过去除一个 BH(3)氢原子,得到了生成的硼中心自由基的 EPR 光谱。这些光谱数据与 DFT 计算相结合,证明了 NHC-BH(2)*自由基是平面的π离域物种。叔丁氧基自由基从 NHC-硼烷中夺取氢原子的速度比 C 中心自由基快 3 个数量级以上,尽管对于空间位阻较大的 NHC-BH(3)中心,速率明显下降。两个 NHC-硼基自由基的组合以强烈依赖空间位阻的速率生成 1,2-双-NHC-二硼烷。对于空间位阻较小的 NHC-硼基,终止速率增加到扩散控制极限。溴原子从烷基、烯丙基和苄基溴迅速转移到咪唑基 NHC-硼基自由基上。然而,氯原子的抽提效率要低得多,只有空间位阻较小的 NHC-硼基与烯丙基和苄基氯化物反应时才能观察到。对于含有叔丁基取代基的硼的 NHC-硼烷,叔丁基的叔氢原子被选择性地除去。生成的含硼β-烷基自由基迅速发生 B-C 键的β断裂,生成 NHC-硼基自由基和烯烃。