Competing reactions of CO2 with cations and anions in azolide ionic liquids. 2014

Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, Indiana 46556 (United States).

We show that phosphonium azolide ionic liquids of interest for CO2 capture applications react with CO2 both through the normal anion channel and, at elevated temperatures, through a previously unrecognized cation channel. The reaction is caused by an interaction between the anion and cation that allows proton transfer, and involves a phosphonium ylide intermediate. The cation reaction can be mitigated by using ammonium rather than phosphonium cations. Thus, phosphonium and ammonium cations paired with aprotic heterocyclic anions (AHAs) react with CO2 through different mechanisms at elevated temperatures. This work shows that careful consideration of both physical properties and chemical reactivity of ILs based on AHA anions is needed when designing ionic liquids for CO2 separations.

UI MeSH Term Description Entries
D008958 Models, Molecular Models used experimentally or theoretically to study molecular shape, electronic properties, or interactions; includes analogous molecules, computer-generated graphics, and mechanical structures. Molecular Models,Model, Molecular,Molecular Model
D008968 Molecular Conformation The characteristic three-dimensional shape of a molecule. Molecular Configuration,3D Molecular Structure,Configuration, Molecular,Molecular Structure, Three Dimensional,Three Dimensional Molecular Structure,3D Molecular Structures,Configurations, Molecular,Conformation, Molecular,Conformations, Molecular,Molecular Configurations,Molecular Conformations,Molecular Structure, 3D,Molecular Structures, 3D,Structure, 3D Molecular,Structures, 3D Molecular
D009943 Organophosphorus Compounds Organic compounds that contain phosphorus as an integral part of the molecule. Included under this heading is broad array of synthetic compounds that are used as PESTICIDES and DRUGS. Organophosphorus Compound,Organopyrophosphorus Compound,Organopyrophosphorus Compounds,Compound, Organophosphorus,Compound, Organopyrophosphorus,Compounds, Organophosphorus,Compounds, Organopyrophosphorus
D002245 Carbon Dioxide A colorless, odorless gas that can be formed by the body and is necessary for the respiration cycle of plants and animals. Carbonic Anhydride,Anhydride, Carbonic,Dioxide, Carbon
D000327 Adsorption The adhesion of gases, liquids, or dissolved solids onto a surface. It includes adsorptive phenomena of bacteria and viruses onto surfaces as well. ABSORPTION into the substance may follow but not necessarily. Adsorptions
D052578 Ionic Liquids Salts that melt below 100 C. Their low VOLATILIZATION can be an advantage over volatile organic solvents. Ionic Liquid,Ionic Solvents,Liquid, Ionic,Liquids, Ionic,Solvents, Ionic
D064751 Ammonium Compounds Inorganic compounds that include a positively charged tetrahedral nitrogen (ammonium ion) as part of their structure. This class of compounds includes a broad variety of simple ammonium salts and derivatives. Ammonium

Related Publications

Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
February 2018, Chemical communications (Cambridge, England),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
January 2024, RSC advances,
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
January 2007, Chemistry (Weinheim an der Bergstrasse, Germany),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
November 2017, Physical chemistry chemical physics : PCCP,
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
February 2021, ChemistryOpen,
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
February 2022, Chemistry (Weinheim an der Bergstrasse, Germany),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
January 2008, Chemistry (Weinheim an der Bergstrasse, Germany),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
January 2013, Chemistry (Weinheim an der Bergstrasse, Germany),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
September 2006, Chemical communications (Cambridge, England),
Thomas R Gohndrone, and Tae Bum Lee, and M Aruni DeSilva, and Mauricio Quiroz-Guzman, and William F Schneider, and Joan F Brennecke
January 2022, Molecules (Basel, Switzerland),
Copied contents to your clipboard!