Abstract
The activation of carbon dioxide (CO2) mediated by NbBN2−cluster anions under the conditions of thermal collision has been investigated by time-of-flight mass spectrometry combined with density functional theory calculations. Two C O double bonds in the CO2molecule are completely broken and two C-N bonds are further generated to form the novel molecule NCNBO−. To the best of our knowledge, this new molecule is synthesized and reported for the first time. In addition, one oxygen atom transfer channel produces another product, NbBN2O−. Both of the Nb and B atoms in NbBN2−donate electrons to reduce CO2, and the carbon atom originating from CO2serves as an electron reservoir. The reaction of NbB−with N2was also investigated theoretically, and the formation of NbBN2−from this reaction is thermodynamically and kinetically quite favorable, indicating that NCNBO−might be produced from the coupling of N2and CO2mediated by NbB−anions.
Original language | English |
---|---|
Pages (from-to) | 22613-22619 |
Number of pages | 7 |
Journal | Physical Chemistry Chemical Physics |
Volume | 23 |
Issue number | 39 |
DOIs | |
Publication status | Published - 21 Oct 2021 |