Characterization of adsorbed water in MIL-53(Al) by FTIR spectroscopy and ab-initio calculations

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TitreCharacterization of adsorbed water in MIL-53(Al) by FTIR spectroscopy and ab-initio calculations
Type de publicationJournal Article
Year of Publication2015
AuteursSalazar J.M, Weber G., Simon J.M, Bezverkhyy I., Bellat J.P
JournalJOURNAL OF CHEMICAL PHYSICS
Volume142
Pagination124702
Date PublishedMAR 28
Type of ArticleArticle
ISSN0021-9606
Résumé

Here, we report ab-initio calculations developed with a twofold purpose: understand how adsorbed water molecules alter the infrared spectrum of the metal-organic framework MIL-53(Al) and to investigate which are the associated physico-chemical processes. The analyzed structures are the two anhydrous narrow (np circle divide) and large (lp circle divide) pore forms and the hydrated narrow pore form (np-H2O) of the MIL-53(Al). For these structures, we determined their corresponding infrared spectra (FTIR) and we identified the vibrational modes associated to the dominant spectral lines. We show that wagging and scissoring modes of CO2 give flexibility to the structure for facilitating the lp circle divide-np circle divide transition. In our studies, this transition is identified by eight vibrational modes including the delta CH(18a) vibrational mode currently used to identify the mentioned transition. We report an exhaustive band identification of the infrared spectra associated to the analyzed structures. Moreover, the FTIR for the np-H2O structure allowed us to identify four types of water molecules linked to the host structure by one to three hydrogen bonds. (C) 2015 AIP Publishing LLC.

DOI10.1063/1.4914903