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Título
Water induces the same crown shapes as Li+ or Na+ in 15-crown-5 ether: a broadband rotational study
Autor
Año del Documento
2019
Editorial
Royal Society of Chemistry
Documento Fuente
Physical Chemistry Chemical Physics, 2019, 21, 2875-2881
Resumo
15‐crown‐5 ether (15C5) and its complexes with water (w) have been studied using broadband Fourier transform microwave spectroscopy in a supersonic jet. A new conformer of 15C5 has been observed and established as the new global minimum out of a total of nine isolated structures. In addition, two 15C5‐w and two 15C5‐w2 clusters have been observed. The cluster structures have been unambiguously identified through the observation of water 18O isotopologue spectra. In all the clusters, at least one water molecule, located close to the axis of the 15C5 ring, interacts through two simultaneous hydrogen bonds to the endocyclic oxygen atoms. This interaction reshapes the 15C5 ring to reduce its rich conformational landscape to only two open structures, related to those found in complexes with Li+ or Na+ ions. In the most abundant 15C5‐w2 form, the two water molecules repeat the same interaction scheme while binding to opposite
sides of the ring. In the second most abundant dihydrated form the two water molecules lie on the same side of the ring. This finding is exceptionally rare because water‐water interactions typically prevail over the formation of additional solutewater contacts, and it showcases the particular binding features of crown ethers.
Materias (normalizadas)
Espectroscopía de rotación
Quimica
Materias Unesco
23 Química
2301.13 Espectroscopia de Microondas
2307 Química Física
Palabras Clave
crown ether 15c5
microsolvation
rotational spectroscopy
Water cluster
structure
ISSN
1463-9076
Revisión por pares
SI
Patrocinador
Ministerio de economia, industria y competitividad CTQ2016-75253-P
Propietario de los Derechos
Royal Society of Chemistry
Idioma
spa
Tipo de versión
info:eu-repo/semantics/draft
Derechos
openAccess
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