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◆ Journal of the American Chemical Society2026-09-09

Ammonia Diverts Ozonolysis from C═C Scission to Nitrogen Incorporation via Competitive Adsorption and Nucleophilic Trapping.

Jinli Xu, Jiajia Wang, Zhifeng Tang, Qingxin Deng, Bowen He, Jiangping Liu, Davide Vione, Zoran Ristovski, Lidia Morawska, Lei Li, Xue Li, Joseph Francisco, Sasho Gligorovski

原始摘要(英文原文)· Original abstract
The reaction of ozone with unsaturated organic compounds is a fundamental process in chemistry, central to both synthetic transformations and environmental molecular cycling. Here, we reveal a mechanistic branching in the Criegee ozonolysis of squalene, a model poly unsaturated triterpene, induced by gaseous ammonia, a ubiquitous nucleophile. Our experimental findings reveal that NH3 suppresses the ozone uptake by a factor of ∼3, an inhibition traced to competitive adsorption. DFT calculations and kinetic modeling indicate that NH3·H2O complexes outcompete O3 for reactive C═C sites, suggesting a site-blocking suppression mechanism. Real-time ultrahigh-resolution mass spectrometry identifies nearly 40 unique nitrogen-containing organic compounds (NOCs) formed exclusively in the presence of NH3. Gibbs free energy profiles support a thermodynamically feasible mechanism wherein NH3 acts as a nucleophile, intercepting reactive carbonyl oxide intermediates (Criegee intermediates) and downstream carbonyl species. This work elucidates a direct pathway for nitrogen incorporation into unsaturated lipid oxidation matrices, demonstrating how a simple nucleophile can fundamentally rewire a classic organic reaction mechanism simultaneously controlling and steering product distribution toward complex, heteroatom-enriched architectures. These findings provide molecular-scale understanding of nucleophile participation in multiphase ozonolysis, with implications for synthetic and complex organic chemistry.
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Ammonia Diverts Ozonolysis from C═C Scission to Nitrogen Incorporation via Competitive Adsorption and Nucleophilic Trapping. — 科研速览 Science Skim