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溴鎓离子和氯鎓离子的绝对构型稳定性。

On the absolute configurational stability of bromonium and chloronium ions.

机构信息

Roger Adams Laboratory, Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Am Chem Soc. 2010 Feb 3;132(4):1232-3. doi: 10.1021/ja909965h.

Abstract

Halonium ions have long been established as the critical intermediates in halogenation and halofunctionalization of alkenes. Although these workhorse reactions have been extensively studied mechanistically and employed synthetically, the paucity of enantioselective variants is striking. A central problem in the development of catalytic enantioselective halofunctionalizations is the reversible formation of halonium ions and the facile olefin-to-olefin transfer. In this report, configurationally defined and enantiomerically enriched bromonium and chloronium ions are generated (by solvolysis of enantiomerically enriched precursors) and shown to be intercepted intermolecularly with high enantio- and diastereospecificity by various nucleophiles. Most importantly, the stereospecificity of capture is not significantly eroded in the presence of olefins.

摘要

高卤鎓离子长期以来一直被认为是烯烃卤化和卤官能团化的关键中间体。尽管这些主力反应在机理上已经得到了广泛的研究,并在合成中得到了应用,但缺乏对映选择性变体的情况却引人注目。在开发催化对映选择性卤官能团化反应中,一个核心问题是卤鎓离子的可逆形成以及烯烃到烯烃的转移。在本报告中,通过对映体富集的前体的溶剂解,生成了构型确定和对映体富集的溴鎓离子和氯鎓离子,并证明它们可以与各种亲核试剂进行高对映选择性和非对映选择性的分子间捕获。最重要的是,在烯烃存在的情况下,捕获的立体特异性并没有明显的减弱。

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