Stang Martin, Mycka Robert J, Blum Suzanne A
Department of Chemistry, University of California, Irvine, California 92697-2025, United States.
Community College of Allegheny County, Pittsburgh, Pennsylvania 15212, United States.
J Org Chem. 2023 Nov 3;88(21):15159-15167. doi: 10.1021/acs.joc.3c01653. Epub 2023 Oct 25.
Different reaction selectivity occurs with the Lewis acids -chlorocatecholborane (ClBcat), -bromocatecholborane (BrBcat), and BBr, favoring either alkyne haloboration, electrophilic cyclization of a tethered nucleophilic sulfur onto the alkyne, or group transfer of the nucleophile. This reaction selectivity also depends on the chain length of the tethered nucleophile, revealing a subtle interplay of relative kinetics and thermodynamics. In all cases, BBr reacts readily with alkynes to form haloborated products; however, this process is reversible, and this reversibility can be harnessed to ultimately access regio- and stereodefined cyclic sulfonium zwitterions via the slower but thermodynamically favored electrophilic cyclization pathway. Reversibility was noted by following the reaction by NMR spectroscopy, and by characterizing the kinetic and thermodynamic products by a combination of 2D NMR spectroscopy and single-crystal X-ray diffraction. The "mixed" reagent bromocatechol borane (BrBcat) displayed reactivity between ClBcat and BBr, producing bromoboration in some cases and electrophilic cyclization in others. With this enhanced understanding of the reaction dynamics, it becomes possible to use boron Lewis acids in a predictable manner in cases where haloboration is the kinetic product but in which the reversibility of this reaction maintains access to eventual alternative reactivity leading to desired building blocks in organic synthesis.
路易斯酸——氯代邻苯二酚硼烷(ClBcat)、溴代邻苯二酚硼烷(BrBcat)和三溴化硼(BBr₃)会产生不同的反应选择性,有利于炔烃卤硼化反应、连接的亲核硫对炔烃的亲电环化反应或亲核试剂的基团转移反应。这种反应选择性还取决于连接的亲核试剂的链长,揭示了相对动力学和热力学之间的微妙相互作用。在所有情况下,BBr₃都能与炔烃迅速反应形成卤硼化产物;然而,这个过程是可逆的,并且这种可逆性可以通过较慢但热力学上有利的亲电环化途径来最终获得区域和立体定义的环状硫鎓两性离子。通过核磁共振光谱跟踪反应,并结合二维核磁共振光谱和单晶X射线衍射对动力学和热力学产物进行表征,从而发现了可逆性。“混合”试剂溴代邻苯二酚硼烷(BrBcat)的反应活性介于ClBcat和BBr₃之间,在某些情况下产生溴硼化反应,在其他情况下产生亲电环化反应。随着对反应动力学的深入理解,在卤硼化是动力学产物但该反应的可逆性能够保持通向最终替代反应性从而在有机合成中获得所需结构单元的情况下,以可预测的方式使用硼路易斯酸成为可能。