化学
脱质子化
烷基化
电泳剂
烯丙基重排
亲核细胞
烷基
筑地反应
胺化
小学(天文学)
药物化学
催化作用
酮
反应性(心理学)
有机化学
物理
天文
医学
离子
替代医学
病理
作者
Jianyu Li,Sheng Gong,Shaolun Gao,Jianfeng Chen,Wenwen Chen,Baoguo Zhao
标识
DOI:10.1038/s41467-024-45131-3
摘要
Primary alkyl amines are highly reactive in N-nucleophilic reactions with electrophiles. However, their α-C-H bonds are unreactive towards electrophiles due to their extremely low acidity (pKa ~57). Nonetheless, 1,8-diazafluoren-9-one (DFO) can activate primary alkyl amines by increasing the acidity of the α-amino C-H bonds by up to 1044 times. This makes the α-amino C-H bonds acidic enough to be deprotonated under mild conditions. By combining DFO with an iridium catalyst, direct asymmetric α-C-H alkylation of NH2-unprotected primary alkyl amines with allylic carbonates has been achieved. This reaction produces a wide range of chiral homoallylic amines with high enantiopurities. The approach has successfully switched the reactivity between primary alkyl amines and allylic carbonates from intrinsic allylic amination to the α-C-H alkylation, enabling the construction of pharmaceutically significant chiral homoallylic amines from readily available primary alkyl amines in a single step.
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