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Crystalline phase transition in as-synthesized pure silica zeolite RTH containing tetra-alkyl phosphonium as organic structure directing agent

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Crystalline phase transition in as-synthesized pure silica zeolite RTH containing tetra-alkyl phosphonium as organic structure directing agent

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dc.contributor.author Martinez-Ortigosa, Joaquin es_ES
dc.contributor.author Millán, Reisel es_ES
dc.contributor.author Simancas, Jorge es_ES
dc.contributor.author Hernández-Rodríguez, Manuel es_ES
dc.contributor.author Vidal Moya, José Alejandro es_ES
dc.contributor.author Jorda Moret, Jose Luis es_ES
dc.contributor.author Martineau-Corcos, Charlotte es_ES
dc.contributor.author Sarou-Kanian, Vincent es_ES
dc.contributor.author Boronat Zaragoza, Mercedes es_ES
dc.contributor.author Blasco Lanzuela, Teresa es_ES
dc.contributor.author Rey Garcia, Fernando es_ES
dc.date.accessioned 2024-01-24T19:02:59Z
dc.date.available 2024-01-24T19:02:59Z
dc.date.issued 2024-01-03 es_ES
dc.identifier.issn 2050-7488 es_ES
dc.identifier.uri http://hdl.handle.net/10251/202124
dc.description.abstract [EN] The choice of structure directing agents (SDAs) in zeolite synthesis significantly impacts the arrangement of active sites, thereby influencing the stabilization of reaction intermediates with profound implications for catalytic applications. Therefore, understanding the distribution of SDAs along with the substitution of heteroatoms for silicon in zeolites is imperative for tailoring optimized materials for specific applications. This study is centered on the synthesis of all-silica RTH type zeolites in the presence of fluoride, utilizing triisopropyl(methyl)phosphonium as the organic SDA (OSDA). Zeolites produced under varying conditions of time and temperature exhibit differences in their X-ray diffractograms, indicating the presence of two distinct crystalline phases. The 19F NMR spectra confirm the presence of fluoride within the small rth cage and exhibit two distinct signals depending on the sample. The 29Si NMR spectra reveal the existence of penta-coordinated F-SiO4 species, resulting in sixteen non-equivalent Si sites. Through ab initio DFT methods, the stabilization energy and 29Si chemical shielding of several models featuring F-SiO4 situated at all crystallographic sites were computed. Comparison with experimental results enabled the identification of the framework position where the five-coordinate silicon is located, which differs between the two crystalline phases of the as-synthesized RTH zeolites. Consequently, the placement of fluoride in either of these two sites within the RTH zeolite can be controlled during the synthesis. It is expected that this methodology can be extended to manipulate the position of trivalent atoms (e.g., Al3+ or B3+), which can affect the catalytic properties of the RTH zeolite. es_ES
dc.description.sponsorship Financial support by the Spanish Ministry of Science and Innovation by MCIN/AEI/10.13039/501100011033 and "ERDF A way of making Europe" (Projects: CEX2021-001230-S, PID2022-136934OB-I00, PID2020-112590GB-C21) is deeply acknowledged. The authors also thank the Spanish Ministry of Science and Innovation by MCIN/AEI/10.13039/501100011033 and "European Union Next Generation EU/PRTR" (Projects: TED2021-130191B-C41 and TED2021-130739B-I00), Generalitat Valenciana (Project: Prometeo/2021/077) and "Advanced Materials Programme" of Generalitat Valenciana "European Union Next Generation EU/PRTR" (project: MFA/2022/047). Financial support from the IR INFRANALYTICS FR2054 for conducting the research is gratefully acknowledged. J.M-O acknowledges the financial support from the European Union - NextGeneration EU through the Universitat Politecnica de Valencia, Ministerio de Universidades, Plan de Recuperacion, Transformacion y Resiliencia for the Margarita Salas grant. The authors thankfully acknowledge the Red Espanola de Supercomputacion (RES) and Servei d'Informatica de la Universitat de Valencia (SIUV) for computational resources and technical support. The authors acknowledge the Microscopy Service of the Universitat Politecnica de Valencia for its assistance in microscopy characterization and beamline MSPD at synchrotron ALBA for beamtime allocation. es_ES
dc.language Inglés es_ES
dc.publisher The Royal Society of Chemistry es_ES
dc.relation.ispartof Journal of Materials Chemistry A es_ES
dc.rights Reconocimiento (by) es_ES
dc.subject Solid-state NMR es_ES
dc.subject Extra-large-pore es_ES
dc.subject Generalized gradient approximation es_ES
dc.subject Molecular-sieves es_ES
dc.subject Framework es_ES
dc.subject Location es_ES
dc.title Crystalline phase transition in as-synthesized pure silica zeolite RTH containing tetra-alkyl phosphonium as organic structure directing agent es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.1039/D3TA06071C es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2020-112590GB-C21/ES/MATERIALES HIBRIDOS DE BAJA DIMENSIONALIDAD CON MORFOLOGIA, ESTRUCTURACION Y REACTIVIDAD CONTROLABLE PARA LLEVAR A CABO PROCESOS CATALITICOS Y NANOTECNOLOGICOS / es_ES
dc.relation.projectID info:eu-repo/grantAgreement/CNRS//FR-2054//IR Infranalytics/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/GVA//PROMETEO%2F2021%2F077/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI//TED2021-130191B-C41//Ayudas públicas a proyectos estratégicos orientados a la transición ecológica y a la transición digital, convocatoria 2021/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI//TED2021-130739B-I00//Proyectos Estratégicos Orientados a la Transición Ecológica y a la Transición Digital. Convocatoria 2021/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/AEI//PID2022-136934OB-I00//Ayudas para contratos predoctorales para la formación de doctores, convocatoria 2022/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/MICINN//CEX2021-001230-S/ es_ES
dc.relation.projectID info:eu-repo/grantAgreement/CIUCSD//MFA%2F2022%2F047/ es_ES
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Instituto Universitario Mixto de Tecnología Química - Institut Universitari Mixt de Tecnologia Química es_ES
dc.description.bibliographicCitation Martinez-Ortigosa, J.; Millán, R.; Simancas, J.; Hernández-Rodríguez, M.; Vidal Moya, JA.; Jorda Moret, JL.; Martineau-Corcos, C.... (2024). Crystalline phase transition in as-synthesized pure silica zeolite RTH containing tetra-alkyl phosphonium as organic structure directing agent. Journal of Materials Chemistry A. 12(2):876-891. https://doi.org/10.1039/D3TA06071C es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion https://doi.org/10.1039/D3TA06071C es_ES
dc.description.upvformatpinicio 876 es_ES
dc.description.upvformatpfin 891 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 12 es_ES
dc.description.issue 2 es_ES
dc.relation.pasarela S\505115 es_ES
dc.contributor.funder European Commission es_ES
dc.contributor.funder Generalitat Valenciana es_ES
dc.contributor.funder Universitat de València es_ES
dc.contributor.funder Agencia Estatal de Investigación es_ES
dc.contributor.funder European Regional Development Fund es_ES
dc.contributor.funder Red Española de Supercomputación es_ES
dc.contributor.funder Ministerio de Ciencia e Innovación es_ES
dc.contributor.funder Universitat Politècnica de València es_ES
dc.contributor.funder Centre National de la Recherche Scientifique, Francia es_ES
dc.contributor.funder Conselleria de Innovación, Universidades, Ciencia y Sociedad Digital, Generalitat Valenciana es_ES


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