New linkage chemistry
will endow covalent organic frameworks (COFs)
with not only structural diversity but also fascinating properties.
However, to develop a new type of linkages has been a great challenge.
We herein report the first two COFs using aminal as the linkages.
These two COFs have been synthesized by condensation of secondary
amine and aldehyde. They crystallize in cpi net, which
is a new topology for COFs. The aminal linkage is found to favor reservation
of photophysical property of the monomers due to its tetrahedral geometry
and nonconjugated feature. These aminal-COFs exhibit good thermal
stability and high chemical stability under neutral and basic conditions.
Amide-linked covalent organic frameworks (amide COFs) possess enormous potentials in practical applications benefiting from their high stability and polyamide structures. However, they suffer from very limited accessibility. Herein, we report a new linkage conversion method to rapidly synthesize crystalline amide COFs through oxidation of imine linkages in their corresponding imine-linked frameworks with KHSO 5 as an oxidant under very mild conditions. This synthetic strategy is general, facile, efficient, and scalable, as demonstrated by the procedure of simply stirring mixtures of imine-linked COFs (seven examples) and KHSO 5 in anhydrous dimethylformamide for several hours to complete the conversions and gram-scale synthesis. The high efficiency of this approach enables facile production of amide COFs from widely available imine-linked COFs, which lays the foundation for exploring practical applications of this unique type of polyamide material.
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