Enantioselective Synthesis of Nitriles Containing a Quaternary Carbon Center by Michael Reactions of Silyl Ketene Imines with 1‑Acrylpyrazoles

The enantioselective construction of quaternary carbon centers is a marked challenge in asymmetric catalysis research. It is extremely difficult when a chiral catalyst can not distinguish the facial selectivity of the substrate through bond interactions. Here we realized an enantioselective Michael...

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Veröffentlicht in:Journal of the American Chemical Society 2021-11, Vol.143 (45), p.19091-19098
Hauptverfasser: Chen, Long, Pu, Maoping, Li, Shiyang, Sang, Xinpeng, Liu, Xiaohua, Wu, Yun-Dong, Feng, Xiaoming
Format: Artikel
Sprache:eng
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Zusammenfassung:The enantioselective construction of quaternary carbon centers is a marked challenge in asymmetric catalysis research. It is extremely difficult when a chiral catalyst can not distinguish the facial selectivity of the substrate through bond interactions. Here we realized an enantioselective Michael reaction of silyl ketene imines to 1-acrylpyrazoles using a chiral N,N′-dioxide–Co­(II) complex. The protocol is highly efficient for the construction of nitrile-, aryl-, and dialkyl-bearing carbon centers and has been successful applied in the divergent synthesis of pharmaceuticals and natural products. The through-space dispersion interactions between unbound silyl ketene imines and the 1-acrylpyrazole-bonded catalyst play a key role in facilitating the reactivity and the enantioselectivity of this process.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.1c08382