Trost Barry M, Ryan Michael C, Rao Meera
Department of Chemistry, Stanford University, Stanford, California 94305-5580, USA.
Beilstein J Org Chem. 2016 Jun 7;12:1136-52. doi: 10.3762/bjoc.12.110. eCollection 2016.
A full account of our efforts toward an asymmetric redox bicycloisomerization reaction is presented in this article. Cyclopentadienylruthenium (CpRu) complexes containing tethered chiral sulfoxides were synthesized via an oxidative [3 + 2] cycloaddition reaction between an alkyne and an allylruthenium complex. Sulfoxide complex 1 containing a p-anisole moiety on its sulfoxide proved to be the most efficient and selective catalyst for the asymmetric redox bicycloisomerization of 1,6- and 1,7-enynes. This complex was used to synthesize a broad array of [3.1.0] and [4.1.0] bicycles. Sulfonamide- and phosphoramidate-containing products could be deprotected under reducing conditions. Catalysis performed with enantiomerically enriched propargyl alcohols revealed a matched/mismatched effect that was strongly dependent on the nature of the solvent.
本文全面介绍了我们在不对称氧化还原双环异构化反应方面所做的努力。通过炔烃与烯丙基钌配合物之间的氧化[3 + 2]环加成反应,合成了含有连接手性亚砜的环戊二烯基钌(CpRu)配合物。亚砜上含有对甲氧基苯部分的亚砜配合物1被证明是1,6 - 和1,7 - 烯炔不对称氧化还原双环异构化反应中最有效和选择性最高的催化剂。该配合物用于合成了多种[3.1.0]和[4.1.0]双环化合物。含磺酰胺和氨基磷酸酯的产物可在还原条件下脱保护。用对映体富集的炔丙醇进行的催化反应显示出一种匹配/不匹配效应,该效应强烈依赖于溶剂的性质。