Amb motiu del tancament d'estiu, la validació de documents es reprendrà a partir del 28 d'agost de 2026. Disculpeu les molèsties.
Con motivo del cierre de verano, la validación de documentos se reanudará a partir del 28 de agosto de 2026. Disculpad las molestias
Due to the summer closure, document validation will resume starting August 28, 2026. We apologize for any inconvenience.

Document type

Article

Version

Accepted version

Publication date

All rights reserved

Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/154505

The reaction mechanism of polyalcohol dehydration in hot pressurized water

Journal Title

Director/Tutor

Journal ISSN

Volume Title

Abstract

The use of high-temperature liquid water (HTW) as a reaction medium is a very promising tech- nology in the field of green chemistry. In order to fully exploit this technology, it is crucial to unravel the reaction mechanisms of the processes carried out in HTW. In this work, the reaction mecha- nism of 2,5-hexanediol dehydration in HTW has been studied by means of three different ab initio simulations: string method, metadynamics and molecular dynamics in real time. It is found that the whole reaction involving the protonation, bond exchange and the deprotonation occurs in a single step without a stable intermediate. The hydrogen bonded network of surrounding water has a vital role in assisting an efficient proton relay at the beginning and at the end of the reaction. It is confirmed that the reaction is energetically most favorable in the SN2 pathway with an estimated barrier of 36 kcal/mol, which explains the high stereoselectivity and the reaction rate observed in experiment. The mechanistic insights provided by our study are relevant for a prominent class of reactions in the context of sustainable biomass processing, namely dehydration reactions of polyalcohol molecules.

Subject (English)

Citation

Citation

RUIZ-BARRAGAN, Sergi, RIBAS ARIÑO, Jordi and SHIGA, Motoyuki. The reaction mechanism of polyalcohol dehydration in hot pressurized water. Physical Chemistry Chemical Physics. 2016. Vol. 18, num. 47, pags. 32438-32447. ISSN 1463-9076. [consulted: 7 of August of 2026]. Available at: https://hdl.handle.net/2445/154505

Export metadata

JSON - METS

Share record