Site-Selective α-C-H Functionalization of Trialkylamines via Reversible Hydrogen Atom Transfer Catalysis

被引:42
|
作者
Shen, Yangyang [1 ]
Funez-Ardoiz, Ignacio [2 ]
Schoenebeck, Franziska [2 ]
Rovis, Tomislav [1 ]
机构
[1] Columbia Univ, Dept Chem, New York, NY 10027 USA
[2] Rhein Westfal TH Aachen, Inst Organ Chem, D-52047 Aachen, Germany
关键词
AMINOALKYL RADICALS; PHOTOREDOX CATALYSIS; TERTIARY-AMINES; DRUG DISCOVERY; CHEMISTRY; CARBENE; ALKENES; COMPLEXES; ALCOHOLS; CATIONS;
D O I
10.1021/jacs.1c07144
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Trialkylamines are widely found in naturally occurring alkaloids, synthetic agrochemicals, biological probes, and especially pharmaceuticals agents and preclinical candidates. Despite the recent breakthrough of catalytic alkylation of dialkylamines, the selective alpha-C(sp(3))-H bond functionalization of widely available trialkylamine scaffolds holds promise to streamline complex trialkylamine synthesis, accelerate drug discovery, and execute late-stage pharmaceutical modification with complementary reactivity. However, the canonical methods always result in functionalization at the less-crowded site. Herein, we describe a solution to switch the reaction site through fundamentally overcoming the steric control that dominates such processes. By rapidly establishing an equilibrium between alpha-amino C(sp(3))-H bonds and a highly electrophilic thiol radical via reversible hydrogen atom transfer, we leverage a slower radical-trapping step with electron-deficient olefins to selectively forge a C(sp(3))-C(sp(3)) bond with the more-crowded alpha-amino radical, with the overall selectivity guided by the Curtin-Hammett principle. This subtle reaction profile has unlocked a new strategic concept in direct C-H functionalization arena for forging C-C bonds from a diverse set of trialkylamines with high levels of site selectivity and preparative utility. Simple correlation of site selectivity and C-13 NMR shift serves as a qualitative predictive guide. The broad consequences of this dynamic system, together with the ability to forge N-substituted quaternary carbon centers and implement late-stage functionalization techniques, hold potential to streamline complex trialkylamine synthesis and accelerate small-molecule drug discovery.
引用
收藏
页码:18952 / 18959
页数:8
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