化学
催化作用
钯
烯丙基重排
组合化学
芳基
选择性
烷基
炔烃
结合
手性(物理)
有机化学
数学分析
夸克
物理
量子力学
手征对称破缺
数学
Nambu–Jona Lasinio模型
作者
Barry M. Trost,Benjamin R. Taft,James T. Masters,Jean‐Philip Lumb
摘要
A new strategy for the synthesis of chiral β-alkynyl esters which relies on sequential Pd and Cu catalysis is reported. Terminal alkynes bearing aryl, alkyl, and silyl groups can be employed without prior activation yielding a wide range of important chiral building blocks. The reaction sequence utilizes a robust Pd(II)-catalyzed hydroalkynylation of ynoates with terminal alkynes providing geometrically pure ynenoates which are readily reduced by CuH. In contrast to previous reports, where additions to ynenoates proceed with marginal preference for the 1,6-pathway, this conjugate reduction occurs with high 1,4-selectivity yielding β-alkynyl esters with excellent levels of enantioselectivity. Importantly, the method tolerates a wide range of functionality, including allylic carbonates and carbamates, and thus allows for rapid elaboration of the β-alkynyl esters into a variety of chiral, substituted heterocycles.
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