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◆ Journal of the American Chemical Society2026-02-05· Chemistry

De Novo Labile C–N Bonds Enable Dynamic Covalent Chemistry and Reversible Bioimaging

Chenming Chan, Yating Wang, Jingjing Wan, Y. Catherine Han, Zhaoli Xue, Yang Tian, Qi‐Wei Zhang

原始摘要(英文原文)· Original abstract
Dynamic covalent bonds (DCBs) enable reversible bond formation/cleavage, offering exciting possibilities for smart and adaptive materials, yet challenges such as slow kinetics and stringent conditions required for the reverse reaction currently hinder their broader use. We present a novel C–N σ-bond with exceptional reversibility and ultrafast kinetics ( t 1/2 = 200 ms) across diverse primary aliphatic amine substrates, occurring spontaneously under ambient conditions without catalysts or external energy input, which is enabled by remarkably low activation barriers and near-equilibrium energetics. We showcase this transformative DCB’s versatility in reversible gas-fixation, programmable transamination, and construct the first reversible chemical probes for real-time quantitative tracking of spatiotemporal histamine dynamics in live cells and in vivo within the brain under inflammatory pathology. This work redefines C–N σ-bonds as dynamic linkages, opening avenues for innovation in organic chemistry, adaptive materials, and dynamic biosystems.
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De Novo Labile C–N Bonds Enable Dynamic Covalent Chemistry and Reversible Bioimaging — 科研速览 Science Skim