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Computational quantification of the zwitterionic/quinoid ratio of phenolate dyes for their solvatochromic prediction

dc.contributor.authorAutorAracena, Andrés
dc.contributor.authorAutorDomínguez, Moisés
dc.date.accessionedFecha ingreso2024-09-03T19:19:12Z
dc.date.availableFecha disponible2024-09-03T19:19:12Z
dc.date.issuedFecha publicación2022
dc.identifier.citationReferencia BibliográficaMolecules, 27(24), 13 p.
dc.identifier.issnISSN1420-3049
dc.identifier.uriURLhttp://repositorio.udla.cl/xmlui/handle/udla/1430
dc.identifier.uriURLhttps://www.mdpi.com/journal/molecules
dc.description.abstractResumenSolvatochromic dyes are utilized in various chemical and biological media as chemical sensors. Unfortunately, there is no simple way to predict the type of solvatochromism based on the structure of the dye alone, which restricts their design and synthesis. The most important family of solvatochromic sensors, pyridinium phenolate dyes, has the strongest solvatochromism. Using a natural population analysis (NPA) of the natural bond orbitals (NBO) of the phenolate group in the frontier molecular orbitals, it is possible to calculate the relative polarity of the ground state and excited state and, thus to develop a model that can predict the three types of solvatochromism observed for this family: negative, positive, and inverted. This methodology has been applied to thirteen representative examples from the literature. Our results demonstrate that the difference in the electron density of the phenolate moiety in the frontier molecular orbitals is a simple and inexpensive theoretical indicator for calculating the relative polarity of the ground and excited states of a representative library of pyridinium phenolate sensors, and thus predicting their solvatochromism. Comparing the results with the bond length alternation (BLA) and bond order alternation (BOA) indices showed that the NPA/NBO method is a better way to predict solvatochromic behavior
dc.format.extentdc.format.extent13 páginas
dc.format.extentdc.format.extent1.819Mb
dc.format.mimetypedc.format.mimetypePDF
dc.language.isoLenguaje ISOeng
dc.publisherEditorMDPI
dc.rightsDerechosCreative Commons Attribution (CC BY)
dc.sourceFuentesMolecules
dc.subjectPalabras ClavesSolvatochromism
dc.subjectPalabras ClavesPhenolate dyes
dc.subjectPalabras ClavesZwitterionic structure
dc.subjectPalabras ClavesQuinoid
dc.subject.lcshdc.subject.lcshTransferencia de carga
dc.titleTítuloComputational Quantification of the Zwitterionic
dc.titleTítuloComputational quantification of the zwitterionic/quinoid ratio of phenolate dyes for their solvatochromic prediction
dc.typeTipo de DocumentoArtículo
dc.udla.catalogadordc.udla.catalogadorCBM
dc.udla.indexdc.udla.indexWoS
dc.udla.indexdc.udla.indexScience Citation Index Expanded
dc.udla.indexdc.udla.indexScopus
dc.udla.indexdc.udla.indexAcademic Search Ultimate
dc.udla.indexdc.udla.indexDOAJ
dc.udla.indexdc.udla.indexCAB Abstracts
dc.udla.indexdc.udla.indexChemical Abstracts Core
dc.udla.indexdc.udla.indexEMBASE
dc.udla.indexdc.udla.indexMEDLINE
dc.identifier.doidc.identifier.doi10.3390/molecules27249023
dc.facultaddc.facultadFacultad de Medicina Veterinaria y Agronomía


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