Syntheses of cyclic carbonates with amidinium halide catalysts in reusable, reversible, room-temperature ionic liquids or acetonitrile
- 18 November 2011
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Green Chemistry
- Vol. 14 (1), 209-216
- https://doi.org/10.1039/c1gc16027c
Abstract
In situ-prepared, reversible, room-temperature ionic liquids (RTILs), amidinium carbamates, have been used as media for the syntheses of cyclic carbonates by cycloaddition of CO2 to epoxides. The amidinium carbamates were prepared by exposing equimolar mixtures of an easily synthesized amidine and a primary amine to CO2 gas. For comparison purposes, amidinium dithiocarbamates were also employed as the RTILs in some experiments. Reaction between CO2 and four epoxides in the RTILs, occurs in good yields (> 90% in many cases) at room temperature or 50 °C in the presence of an amidinium halide catalyst. Product and any unreacted epoxide were extracted easily upon addition of an immiscible, lower density liquid to an RTIL reaction mixture. This process was repeated three times with the same RTIL without any obvious decrease in catalytic activity; presumably, additional transformations could have been conducted. The influences of the type of catalyst, CO2 pressure, reaction time, and temperature on the reaction yields have been investigated. The relatively mild reaction conditions and ease of separation of products, as well as the ability of the amidinium carbamates to be reused in the presence or absence of water make this an attractive alternative to other procedures for the efficient syntheses of cyclic carbonates.Keywords
This publication has 85 references indexed in Scilit:
- In situ Formation of Thermally Stable, Room-Temperature Ionic Liquids from CS2 and Amidine/Amine Mixtures.Chemistry of Materials, 2010
- Synthesis of Styrene Carbonate from Carbon Dioxide and Styrene Oxide with Various Zinc Halide-Based Ionic LiquidsCatalysis Letters, 2010
- Highly active and robust organic–inorganic hybrid catalyst for the synthesis of cyclic carbonates from carbon dioxide and epoxidesGreen Chemistry, 2008
- Direct preparation of styrene carbonates from styrene using an ionic-liquid-based one-pot multistep synthetic processApplied Catalysis A: General, 2007
- Zeolite-based organic–inorganic hybrid catalysts for phosgene-free and solvent-free synthesis of cyclic carbonates and carbamates at mild conditions utilizing CO2Applied Catalysis A: General, 2005
- Chemical Fixation of Carbon Dioxide Co‐Catalyzed by a Combination of Schiff Bases or Phenols and Organic BasesEuropean Journal of Organic Chemistry, 2004
- Novel Methodologies for the Synthesis of Cyclic CarbonatesChemistry – A European Journal, 2004
- A Novel Methodology for the Synthesis of Cyclic Carbonates Based on the Palladium-Catalyzed Cascade Reaction of 4-Methoxycarbonyloxy-2-butyn-1-ols with Phenols, Involving a Novel Carbon Dioxide Elimination-Fixation ProcessJournal of the American Chemical Society, 2003
- Reaction of carbon dioxide with oxetane catalyzed by organotin halide complexes: control of reaction by ligandsOrganometallics, 1987
- Hard and Soft Acids and BasesJournal of the American Chemical Society, 1963