Is the DBU–CO2 adduct stable in ionic liquid media?

The DBU–CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase–CO2 interaction...

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Published inPhysical chemistry chemical physics : PCCP Vol. 27; no. 17; pp. 8680 - 8683
Main Authors Giovanni Rodrigues Morselli, Philippi, Frederik, Pedro Henrique de Paula Sabanay, Reinaldo Camino Bazito, Margarida Costa Gomes, Ando, Rômulo Augusto
Format Journal Article
LanguageEnglish
Published Cambridge Royal Society of Chemistry 30.04.2025
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Abstract The DBU–CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase–CO2 interactions, unveiling a new potential route to CO2 activation.
AbstractList The DBU-CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase-CO2 interactions, unveiling a new potential route to CO2 activation.The DBU-CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase-CO2 interactions, unveiling a new potential route to CO2 activation.
The DBU–CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase–CO2 interactions, unveiling a new potential route to CO2 activation.
Author Margarida Costa Gomes
Reinaldo Camino Bazito
Giovanni Rodrigues Morselli
Pedro Henrique de Paula Sabanay
Philippi, Frederik
Ando, Rômulo Augusto
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Snippet The DBU–CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine...
The DBU-CO2 adduct was characterized for the first time by 13C NMR with labelled 13CO2 and IR spectroscopy. Theoretical calculations were crucial to determine...
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SubjectTerms Carbon dioxide
Infrared spectroscopy
Ionic liquids
NMR
Nuclear magnetic resonance
Title Is the DBU–CO2 adduct stable in ionic liquid media?
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