Enhancing catalytic epoxide ring-opening selectivity using surface-modified Ti3C2Tx MXenes

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Título: Enhancing catalytic epoxide ring-opening selectivity using surface-modified Ti3C2Tx MXenes
Autor/es: Slot, Thierry K. | Natu, Varun | Ramos-Fernández, Enrique V. | Sepúlveda-Escribano, Antonio | Barsoum, Michel | Rothenberg, Gadi | Shiju, N. Raveendran
Grupo/s de investigación o GITE: Materiales Avanzados
Centro, Departamento o Servicio: Universidad de Alicante. Departamento de Química Inorgánica | Universidad de Alicante. Instituto Universitario de Materiales
Palabras clave: Heterogeneous catalysis | MXene | Acid catalysis | Epoxide ring opening | Epoxide isomerisation | Styrene oxide
Área/s de conocimiento: Química Inorgánica
Fecha de publicación: 19-mar-2021
Editor: IOP Publishing
Cita bibliográfica: 2D Materials. 2021, 8: 035003. https://doi.org/10.1088/2053-1583/abe951
Resumen: MXenes are a new family of two-dimensional carbides and/or nitrides. Their 2D surfaces are typically terminated by O, OH and/or F atoms. Here we show that Ti3C2Tx—the most studied compound of the MXene family—is a good acid catalyst, thanks to the surface acid functionalities. We demonstrate this by applying Ti3C2Tx in the epoxide ring-opening reaction of styrene oxide (SO) and its isomerization in the liquid phase. Modifying the MXene surface changes the catalytic activity and selectivity. By oxidizing the surface, we succeeded in controlling the type and number of acid sites and thereby improving the yield of the mono-alkylated product to >80%. Characterisation studies show that a thin oxide layer, which forms directly on the Ti3C2Tx surface, is essential for catalysing the SO ring-opening. We hypothesize that two kinds of acid sites are responsible for this catalysis: In the MXene, strong acid sites (both Lewis and Brønsted) catalyse both the ring-opening and the isomerization reactions, while in the Mxene–TiO2 composite weaker acid sites catalyse only the ring-opening reaction, increasing the selectivity to the mono-alkylated product.
Patrocinador/es: TKS was supported by the NWO TOP-PUNT Catalysis in Confined Spaces (Grant 718.015.004). EVRF and ASE acknowledge financial support by MINECO (Spain) through the projects MAT2017-86992-R and MAT2016-80285-P. VN and MWB thank NSF DMR 1740795 for financial support.
URI: http://hdl.handle.net/10045/113772
ISSN: 2053-1583
DOI: 10.1088/2053-1583/abe951
Idioma: eng
Tipo: info:eu-repo/semantics/article
Derechos: © 2021 The Author(s). Published by IOP Publishing Ltd. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 license. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
Revisión científica: si
Versión del editor: https://doi.org/10.1088/2053-1583/abe951
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