化学
试剂
对映选择合成
不对称诱导
电泳剂
催化作用
组合化学
放热反应
炔基化
有机化学
作者
Davinia Fernández González,Jonathan P. Brand,Régis Mondière,Jérôme Waser
标识
DOI:10.1002/adsc.201300266
摘要
Abstract Herein, we report a detailed study on the electrophilic alkynylation of cyclic keto esters and amides with e thynyl b enziodo x olone (EBX) reagents. The structure and stability of this class of reagents is first described more in details. Differential scanning calorimetry (DSC) experiments showed a strong exothermic decomposition with EBX reagents, leading to guidelines for the safe use of these compounds. The extension of the method to aromatic alkynes and a broad range of benziodoxol(on)e reagents is then reported. Based on our preliminary results using Cinchona ‐based phase‐transfer catalysts, the enantioselective alkynylation of cyclic keto esters could be achieved. Binaphthyl‐derived ammonium catalysts developed by Maruoka and co‐workers gave the highest asymmetric induction with up to 79% ee for an indanone‐derived keto ester. Throughout this work, asymmetric induction was observed only in the case of benziodoxolone reagents, demonstrating their superiority over conventional alkynyliodonium salts. The deeper understanding gained about the factors leading to higher asymmetric induction will be very useful in the future to develop a truly general and highly enantioselective alkynylation method.
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