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Electrophilic insertion and ring growth in 1,2,5-azadiborolidines: theoretical evidence for boron-driven expansion

DFT calculations predict endocyclic CO insertion in 1,2,5-azadiborolidines followed by dimerization and double [1,2]-migration, defining a fourth class of metal-free CO-inserting boracycles. Click to show full abstract

DFT calculations predict endocyclic CO insertion in 1,2,5-azadiborolidines followed by dimerization and double [1,2]-migration, defining a fourth class of metal-free CO-inserting boracycles.

Keywords: growth azadiborolidines; electrophilic insertion; insertion ring; azadiborolidines theoretical; ring growth; insertion

Journal Title: Organic Chemistry Frontiers
Year Published: 2025

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