Wang Xiaoxu, Ke Jing, Zhu Yiling, Deb Arghya, Xu Yijie, Zhang X Peter
Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, United States.
J Am Chem Soc. 2021 Jul 28;143(29):11121-11129. doi: 10.1021/jacs.1c04655. Epub 2021 Jul 20.
A highly efficient catalytic method has been developed for asymmetric radical cyclopropanation of alkenes with in situ-generated α-heteroaryldiazomethanes via Co(II)-based metalloradical catalysis (MRC). Through fine-tuning the cavity-like environments of newly-synthesized -symmetric chiral amidoporphyrins as the supporting ligand, the optimized Co(II)-based metalloradical system is broadly applicable to α-pyridyl and other α-heteroaryldiazomethanes for asymmetric cyclopropanation of wide-ranging alkenes, including several types of challenging substrates. This new catalytic methodology provides a general access to valuable chiral heteroaryl cyclopropanes in high yields with excellent both diastereoselectivities and enantioselectivities. Combined computational and experimental studies further support the underlying stepwise radical mechanism of the Co(II)-based olefin cyclopropanation involving α- and γ-metalloalkyl radicals as the key intermediates.
通过基于钴(II)的金属自由基催化(MRC),已经开发出一种高效的催化方法,用于烯烃与原位生成的α-杂芳基重氮甲烷的不对称自由基环丙烷化反应。通过精细调节新合成的对称手性酰胺基卟啉作为支撑配体的腔状环境,优化后的基于钴(II)的金属自由基体系广泛适用于α-吡啶基和其他α-杂芳基重氮甲烷,用于多种烯烃的不对称环丙烷化反应,包括几种具有挑战性的底物。这种新的催化方法提供了一种通用途径,能够以高收率、优异的非对映选择性和对映选择性获得有价值的手性杂芳基环丙烷。计算和实验相结合的研究进一步支持了基于钴(II)的烯烃环丙烷化反应的潜在逐步自由基机理,其中α-和γ-金属烷基自由基作为关键中间体。