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dc.contributor.authorAutorNavas, Daniel
dc.date.accessionedFecha ingreso2024-09-03T19:19:03Z
dc.date.availableFecha disponible2024-09-03T19:19:03Z
dc.date.issuedFecha publicación2023
dc.identifier.citationReferencia BibliográficaReactions, 4(1), 25 p.
dc.identifier.issnISSN2624-781X
dc.identifier.uriURLhttp://repositorio.udla.cl/xmlui/handle/udla/1398
dc.identifier.uriURLhttps://www.mdpi.com/journal/reactions
dc.description.abstractResumenThis review is based on hydrothermal synthetic procedures that generate different vanadium oxide microstructures with mixed oxidation states, where different vanadium (V5+) precursors (vanadate, vanadium oxide, vanadium alkoxide, etc.,) are used to obtain various types of morphologies and shapes, such as sea urchins, cogs, stars, squares, etc., depending on the amphiphilic molecules (usually surfactants) exhibiting a structural director role containing an organic functional group such as primary amines and thiols, respectively. The performance of sol–gel methodology, where intercalation processes sometimes take place, is crucial prior to the hydrothermal treatment stage to control the V4+/V5+. In every synthesis, many physical and chemical parameters, such as temperature, pH, reaction time., etc., are responsible for influencing the reactions in order to obtain different products; the final material usually corresponds to a mixed oxidation state structure with different content rates. This feature has been used in many technological applications, and some researchers have enhanced it by functionalizing the products to enhance their electrochemical and magnetic properties. Although some results have been auspicious, there are a number of projects underway to improve the synthesis in many ways, including yield, secondary products, size distribution, oxidation state ratio, etc., to achieve the best benefits from these microstructures in the large number of technological, catalytic, and magnetic devices, among other applications. © 2022 by the author.
dc.format.extentdc.format.extent25 páginas
dc.format.extentdc.format.extent21.33Mb
dc.format.mimetypedc.format.mimetypePDF
dc.language.isoLenguaje ISOeng
dc.rightsDerechosCreative Commons Attribution License (CC BY)
dc.sourceFuentesReactions
dc.subjectPalabras ClavesHydrothermal treatment
dc.subjectPalabras ClavesIntercalation compounds
dc.subjectPalabras ClavesNanoarchitectures
dc.subjectPalabras ClavesVanadium oxide
dc.subject.lcshdc.subject.lcshMorfología (Biología)
dc.titleTítuloHydrothermal synthesis of vanadium oxide microstructures with mixed oxidation states
dc.typeTipo de DocumentoArtículo de revisión
dc.udla.catalogadordc.udla.catalogadorCBM
dc.udla.indexdc.udla.indexWoS
dc.udla.indexdc.udla.indexEmerging Sources Citation Index
dc.udla.indexdc.udla.indexScopus
dc.udla.indexdc.udla.indexDOAJ
dc.identifier.doidc.identifier.doi10.3390/reactions4010001
dc.facultaddc.facultadFacultad de Medicina Veterinaria y Agronomía


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