Roger Adams Laboratory, Department of Chemistry, University of Illinois, Urbana, Illinois 61801, United States.
J Am Chem Soc. 2010 Nov 10;132(44):15752-65. doi: 10.1021/ja106837b.
A systematic investigation into the Lewis base catalyzed, asymmetric, intramolecular selenoetherification of olefins is described. A critical challenge for the development of this process was the identification and suppression of racemization pathways available to arylseleniranium ion intermediates. This report details a thorough study of the influences of the steric and electronic modulation of the arylselenenyl group on the configurational stability of enantioenriched seleniranium ions. These studies show that the 2-nitrophenyl group attached to the selenium atom significantly attenuates the racemization of seleniranium ions. A variety of achiral Lewis bases catalyze the intramolecular selenoetherification of alkenes using N-(2-nitrophenylselenenyl)succinimide as the electrophile along with a Brønsted acid. Preliminary mechanistic studies suggest the intermediacy of ionic Lewis base-selenium(II) adducts. Most importantly, a broad survey of chiral Lewis bases revealed that 1,1'-binaphthalene-2,2'-diamine (BINAM)-derived thiophosphoramides catalyze the cyclization of unsaturated alcohols in the presence of N-(2-nitrophenylselenenyl)succinimide and methanesulfonic acid. A variety of cyclic seleno ethers were produced in good chemical yields and in moderate to good enantioselectivities, which constitutes the first catalytic, enantioselective selenofunctionalization of unactivated olefins.
描述了一种对路易斯碱催化的、不对称的、烯烃分子内硒醚化的系统研究。该过程发展的一个关键挑战是识别和抑制芳基硒叶立德中间体可用的外消旋化途径。本报告详细研究了芳基硒烯基的空间和电子调节对手性富集的硒叶立德离子的构型稳定性的影响。这些研究表明,连接在硒原子上的 2-硝基苯基基团显著减弱了硒叶立德离子的外消旋化。各种非手性路易斯碱可以使用 N-(2-硝基苯基硒叶立德)琥珀酰亚胺作为亲电试剂,与布朗斯台德酸一起催化烯烃的分子内硒醚化。初步的机理研究表明,离子路易斯碱-硒(II)加合物是中间体。最重要的是,对大量手性路易斯碱的调查显示,1,1'-联萘-2,2'-二胺(BINAM)衍生的硫代磷酰胺在 N-(2-硝基苯基硒叶立德)琥珀酰亚胺和甲磺酸存在下可以催化不饱和醇的环化。多种环状硒醚以良好的化学收率和中等至良好的对映选择性得到,这构成了对未活化烯烃的首次催化、对映选择性硒官能化。