This work shows how the N 1s photoemission (PE) spectrum of self-associated melamine molecules in aqueous solution has been successfully rationalized using an integrated computational approach encompassing classical metadynamics simulations and quantum calculations based on density functional theory (DFT). The first approach allowed us to describe interacting melamine molecules in explicit waters and to identify dimeric configurations based on π-π and/or H-bonding interactions. Then, N 1s binding energies (BEs) and PE spectra were computed at the DFT level for all structures both in the gas phase and in an implicit solvent. While pure π-stacked dimers show gas-phase PE spectra almost identical to that of the monomer, those of the H-bonded dimers are sensibly affected by NH···NH or NH···NC interactions. Interestingly, the solvation suppresses all of the non-equivalences due to the H-bonds yielding similar PE spectra for all dimers, matching very well our measurements.

Inequivalent Solvation Effects on the N 1s Levels of Self-Associated Melamine Molecules in Aqueous Solution / Ponzi, Aurora; Rosa, Marta; Kladnik, Gregor; Unger, Isaak; Ciavardini, Alessandra; Di Nardi, Lorys; Viola, Elisa; Nicolas, Christophe; Došlić, Nađa; Goldoni, Andrea; Lanzilotto, Valeria. - In: JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL. - ISSN 1520-6106. - 17:13(2023), pp. 3016-3025. [10.1021/acs.jpcb.3c00327]

Inequivalent Solvation Effects on the N 1s Levels of Self-Associated Melamine Molecules in Aqueous Solution

Ciavardini, Alessandra;Di Nardi, Lorys;Viola, Elisa;Lanzilotto, Valeria
2023

Abstract

This work shows how the N 1s photoemission (PE) spectrum of self-associated melamine molecules in aqueous solution has been successfully rationalized using an integrated computational approach encompassing classical metadynamics simulations and quantum calculations based on density functional theory (DFT). The first approach allowed us to describe interacting melamine molecules in explicit waters and to identify dimeric configurations based on π-π and/or H-bonding interactions. Then, N 1s binding energies (BEs) and PE spectra were computed at the DFT level for all structures both in the gas phase and in an implicit solvent. While pure π-stacked dimers show gas-phase PE spectra almost identical to that of the monomer, those of the H-bonded dimers are sensibly affected by NH···NH or NH···NC interactions. Interestingly, the solvation suppresses all of the non-equivalences due to the H-bonds yielding similar PE spectra for all dimers, matching very well our measurements.
2023
melamine; aqueous solution; self-association; hydrogen bond
01 Pubblicazione su rivista::01a Articolo in rivista
Inequivalent Solvation Effects on the N 1s Levels of Self-Associated Melamine Molecules in Aqueous Solution / Ponzi, Aurora; Rosa, Marta; Kladnik, Gregor; Unger, Isaak; Ciavardini, Alessandra; Di Nardi, Lorys; Viola, Elisa; Nicolas, Christophe; Došlić, Nađa; Goldoni, Andrea; Lanzilotto, Valeria. - In: JOURNAL OF PHYSICAL CHEMISTRY. B, CONDENSED MATTER, MATERIALS, SURFACES, INTERFACES & BIOPHYSICAL. - ISSN 1520-6106. - 17:13(2023), pp. 3016-3025. [10.1021/acs.jpcb.3c00327]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1676486
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