The utilization of N-centered radicals to synthesize nitrogen-containing compounds has attracted considerable attention recently,d ue to their powerfulr eactivities and the concomitant construction of CÀNb onds.H owever,t he generation and control of N-centered radicals remain particularly challenging.W er eport at ethering strategy using SOMO-HOMO-converted distonic radical anions for the site-specific aminations of imidates and amidines with aid of the noncovalent interaction. This reaction features aremarkably broad substrate scope and also enables the late-stage functionalization of bioactive molecules.F urthermore,t he reaction mechanism is thoroughly investigated through kinetic studies, Raman spectroscopy, electron paramagnetic resonance spectroscopy, and density functional theory calculations,r evealing that the aminations likely involve direct homolytic cleavage of NÀHbonds and subsequently controllable 1,5 or 1,6 hydrogen atom transfer.