A recent work by Marks et al. on the formation of carbamic acid in NH (Formula presented.) -CO (Formula presented.) interstellar ices pointed out its stability in the gas phase and the concomitant production of its dimer. Prompted by these results and the lack of information on these species, we have performed an accurate structural, energetic and spectroscopic investigation of carbamic acid and its dimer. For the former, the structural and spectroscopic characterization employed composite schemes based on coupled cluster (CC) calculations that account for the extrapolation to the complete basis set limit and core correlation effects. A first important outcome is the definitive confirmation of the nonplanarity of carbamic acid, then followed by an accurate estimate of its rotational and vibrational spectroscopy parameters. As far as the carbamic acid dimer is concerned, the investigation started from the identification of its most stable forms. For them, structure and vibrational properties have been evaluated using density functional theory, while a composite scheme rooted in CC theory has been employed for the energetic characterization. Our results allowed us to provide a better interpretation of the feature observed in the recent experiment mentioned above.

Puzzarini, C., Alessandrini, S. (2024). Carbamic acid and its dimer: A computational study. JOURNAL OF COMPUTATIONAL CHEMISTRY, 45(29), 2501-2512 [10.1002/jcc.27442].

Carbamic acid and its dimer: A computational study

Puzzarini, Cristina
Primo
;
Alessandrini, Silvia
2024

Abstract

A recent work by Marks et al. on the formation of carbamic acid in NH (Formula presented.) -CO (Formula presented.) interstellar ices pointed out its stability in the gas phase and the concomitant production of its dimer. Prompted by these results and the lack of information on these species, we have performed an accurate structural, energetic and spectroscopic investigation of carbamic acid and its dimer. For the former, the structural and spectroscopic characterization employed composite schemes based on coupled cluster (CC) calculations that account for the extrapolation to the complete basis set limit and core correlation effects. A first important outcome is the definitive confirmation of the nonplanarity of carbamic acid, then followed by an accurate estimate of its rotational and vibrational spectroscopy parameters. As far as the carbamic acid dimer is concerned, the investigation started from the identification of its most stable forms. For them, structure and vibrational properties have been evaluated using density functional theory, while a composite scheme rooted in CC theory has been employed for the energetic characterization. Our results allowed us to provide a better interpretation of the feature observed in the recent experiment mentioned above.
2024
Puzzarini, C., Alessandrini, S. (2024). Carbamic acid and its dimer: A computational study. JOURNAL OF COMPUTATIONAL CHEMISTRY, 45(29), 2501-2512 [10.1002/jcc.27442].
Puzzarini, Cristina; Alessandrini, Silvia
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1011858
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