Repozytorium
Wyszukaj
Kolekcje
Inne
Experimental FTIR-MI and Theoretical Studies of Isocyanic Acid Aggregates
Autorzy
Rok wydania
2023
Czasopismo
Numer woluminu
28
Strony
1430/1-1430/14
DOI
10.3390/molecules28031430
Kolekcja
Język
Angielski
Typ publikacji
Artykuł
Homoaggregates of isocyanic acid (HNCO) were studied using FTIR spectroscopy combined with a low-temperature matrix isolation technique and quantum chemical calculations. Computationally, the structures of the HNCO dimers and trimers were optimized at the MP2, B3LYPD3 and B2PLYPD3 levels of theory employing the 6-311++G(3df,3pd) basis set. Topological analysis of the electron density (AIM) was used to identify the type of non-covalent interactions in the studied aggregates. Five stable minima were located on the potential energy surface for (HNCO)2, and nine were located on the potential energy surface for (HNCO)3. The most stable dimer (D1) involves a weak, almost linear N-H⋯N hydrogen bond. Other structures are bound by a N-H⋯O hydrogen bond or by O⋯C or N⋯N van der Waals interactions. Similar types of interactions as in (HNCO)2 were found in the case of HNCO trimers. Among nine stable (HNCO)3 structures, five represent cyclic forms. The most stable T1 trimer structure is characterized by a six-membered ring formed by three N-H⋯N hydrogen bonds and representing high symmetry (C3h). The analysis of the HNCO/Ar spectra after deposition indicates that the N-H⋯O hydrogen-bonded dimers are especially prevalent. Upon annealing, HNCO trimers were observed as well. Identification of the experimentally observed species relied on previous experimental data on HNCO complexes as well as computed data on HNCO homoaggregates’ vibrational spectra.
Słowa kluczowe
HNCO, hydrogen bond, Fourier transform infrared (FTIR), matrix isolation (MI), solid argon, vibrational spectroscopy, intermolecular interaction, computational chemistry, molecular complex, atmospheric chemistry
Licencja otwartego dostępu
Licencja na prawach której można swobodnie kopiować, rozprowadzać, zmieniać i remiksować objęty prawem autorskim utwór (Utwór-przedmiot prawa autorskiego) pod warunkiem podania imienia i nazwiska autora utworu pierwotnego oraz źródła pochodzenia utworu.
Pełny tekst licencji: https://creativecommons.org/licenses/by/3.0/pl/legalcode
Adres publiczny
https://doi.org/10.3390/molecules28031430
Strona internetowa wydawcy
Podobne publikacje
Matrix isolation FTIR and theoretical study of weakly bound complexes of isocyanic acid with nitrogen.
Krupa Justyna, Wierzejewska Maria, Lundell Jan
Structure and IR spectroscopic properties of HNCO complexes with SO2 isolated in solid argon.
Krupa Justyna, Wierzejewska Maria, Lundell Jan
Complexes of glycolic acid with nitrogen isolated in argon matrices. II. Vibrational overtone excitations
Kosendiak Iwona, Ahokas Jussi M. E., Krupa Justyna, Lundell Jan, Wierzejewska Maria