2 research outputs found
Scorpionate Catalysts for Coupling CO<sub>2</sub> and Epoxides to Cyclic Carbonates: A Rational Design Approach for Organocatalysts
Novel scorpionate-type
organocatalysts capable of effectively coupling
carbon dioxide and epoxides under mild conditions to afford cyclic
propylene carbonates were developed. On the basis of a combined experimental
and computational study, a precise mechanistic proposal was developed
and rational optimization strategies were identified. The epoxide
ring-opening, which requires an iodide as a nucleophile, was enhanced
by utilizing an immonium functionality that can form an ion pair with
iodide, making the ring-opening process intramolecular. The CO<sub>2</sub> activation and cyclic carbonate formation were catalyzed
by the concerted action of two hydrogen bonds originating from two
phenolic groups placed at the claw positions of the scorpionate scaffold.
Electronic tuning of the hydrogen bond donors allowed to identify
a new catalyst that can deliver >90% yield for a variety of epoxide
substrates within 7 h at room temperature under a CO<sub>2</sub> pressure
of only 10 bar, and is highly recyclable
Scorpionate Catalysts for Coupling CO<sub>2</sub> and Epoxides to Cyclic Carbonates: A Rational Design Approach for Organocatalysts
Novel scorpionate-type
organocatalysts capable of effectively coupling
carbon dioxide and epoxides under mild conditions to afford cyclic
propylene carbonates were developed. On the basis of a combined experimental
and computational study, a precise mechanistic proposal was developed
and rational optimization strategies were identified. The epoxide
ring-opening, which requires an iodide as a nucleophile, was enhanced
by utilizing an immonium functionality that can form an ion pair with
iodide, making the ring-opening process intramolecular. The CO<sub>2</sub> activation and cyclic carbonate formation were catalyzed
by the concerted action of two hydrogen bonds originating from two
phenolic groups placed at the claw positions of the scorpionate scaffold.
Electronic tuning of the hydrogen bond donors allowed to identify
a new catalyst that can deliver >90% yield for a variety of epoxide
substrates within 7 h at room temperature under a CO<sub>2</sub> pressure
of only 10 bar, and is highly recyclable