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Catalytic Enantioselective Synthesis of Cyclobutenes from Alkynes and Alkenyl Derivatives

机译:由炔烃和烯基衍生物催化合成环丁烯二酮

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摘要

Discovery of enantioselective catalytic reactions for the preparation of chiral compounds from readily available precursors, using scalable and environmentally benign chemistry, can greatly impact their design, synthesis and eventually manufacture on scale. Functionalized cyclobutanes and cyclobutenes are important structural motifs seen in many bioactive natural products and pharmaceutically relevant small molecules. They are also useful precursors for other classes of organic compounds such as other cycloalkane derivatives, heterocyclic compounds, stereo-defined 1,3-dienes and ligands for catalytic asymmetric synthesis. The simplest approach to make cyclobutenes is through an enantioselective [2+2]-cycloaddition between an alkyne and an alkenyl derivative, a reaction which has a long history. Yet known reactions of this class that give acceptable enantioselectivities are of very narrow scope and are strictly limited to activated alkynes and highly reactive alkenes. Here we disclose a broadly applicable enantioselective [2+2]-cycloaddition between wide variety of alkynes and alkenyl derivatives, two of the most abundant classes of organic precursors. The key cycloaddition reaction employs catalysts derived from readily synthesized ligands and an earthabundant metal, cobalt. Over 50 different cyclobutenes with enantioselectivities in the range of 86–97% ee are documented. With the diverse functional groups present in these compounds, further diastereoselective transformations are easily envisaged for synthesis of highly functionalized cyclobutanes and cyclobutenes. Some of the novel observations made during these studies including a key role of a cationic Co(I)-intermediate, ligand and counter ion effects on the reactions, can be expected to have broad implications in homogeneous catalysis beyond the highly valuable synthetic intermediates that are accessible by this route.
机译:发现使用可扩展的和环境友好的化学方法从易得的前体制备手​​性化合物的对映选择性催化反应会极大地影响其设计,合成并最终大规模生产。功能化的环丁烷和环丁烯是在许多生物活性天然产物和药学上相关的小分子中可见的重要结构基序。它们对于其他种类的有机化合物(例如其他环烷烃衍生物,杂环化合物,立体定义的1,3-二烯和催化不对称合成的配体)​​也是有用的前体。制备环丁烯的最简单方法是通过炔烃和烯基衍生物之间的对映选择性[2 + 2]-环加成反应,该反应历史悠久。给出可接受的对映选择性的这类已知反应范围非常狭窄,并且严格限于活化炔烃和高反应性烯烃。在这里,我们公开了在最广泛的两类有机前体炔烃和烯基衍生物之间广泛适用的对映选择性[2 + 2]-环加成反应。关键的环加成反应使用衍生自易于合成的配体和富含土的金属钴的催化剂。记录了50多种不同对映体选择性在86-97%ee范围内的环丁烯。由于这些化合物中存在各种官能团,因此很容易想到进一步的非对映选择性转化,以合成高度官能化的环丁烷和环丁烯。在这些研究过程中所作的一些新发现,包括阳离子Co(I)中间体的关键作用,配体和反离子对反应的影响,预计将对均相催化产生广泛的影响,而不仅仅是具有很高价值的合成中间体。可通过此路线访问。

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