Pagire Santosh K, Kumagai Naoya, Shibasaki Masakatsu
Institute of Microbial Chemistry (BIKAKEN) 3-14-23, Kamiosaki Shinagawa-ku Tokyo 141-0021 Japan
Chem Sci. 2020 Apr 27;11(20):5168-5174. doi: 10.1039/d0sc01890b.
An efficient cooperative chiral Lewis acid/photoredox catalytic system for engaging highly reactive radicals in highly enantioselective conjugate addition to α,β-unsaturated carbonyls is highly desirable. Direct photoexcitation of unbound substrates typically induces undesired background pathways for racemic products and remains a formidable challenge to be addressed in the area of enantioselective photocatalysis. Herein, we report a cooperative catalytic system comprising a chiral Cu(i) complex and an Ir(iii) photocatalyst fueled by visible-light irradiation that allows for seamless integration of the catalytic formation of α-amino alkyl radicals and subsequent enantioselective addition to α,β-unsaturated amides. A 7-aza-6-MeO-indoline attachment on the amide substrates plays a pivotal role in suppressing the undesired pathways, resulting in excellent enantioselectivity and enabling expedited access to valuable γ-aminobutyramides. The indoline amide was readily diversified with full recovery of the azaindoline attachment, highlighting the synthetic utility of this cooperative catalytic system.
非常需要一种高效的手性路易斯酸/光氧化还原协同催化体系,用于使高活性自由基对α,β-不饱和羰基进行高度对映选择性共轭加成。未结合底物的直接光激发通常会引发外消旋产物的不期望的背景反应途径,并且仍然是对映选择性光催化领域中有待解决的巨大挑战。在此,我们报道了一种协同催化体系,该体系由手性Cu(i)配合物和Ir(iii)光催化剂组成,由可见光照射驱动,能够无缝整合α-氨基烷基自由基的催化形成以及随后对α,β-不饱和酰胺的对映选择性加成。酰胺底物上的7-氮杂-6-甲氧基吲哚啉连接在抑制不期望的反应途径中起关键作用,从而产生优异的对映选择性,并能够快速获得有价值的γ-氨基丁酰胺。吲哚啉酰胺很容易多样化,同时氮杂吲哚啉连接得以完全保留,突出了这种协同催化体系的合成效用。