Water adsorption in SAPO-34: elucidating the role of local heterogeneities and defects using dispersion-corrected DFT calculations
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Fischer_Water_adsorption_in SAPO-34_2015_accepted-version.pdf | 2 MB | Adobe PDF | Anzeigen |
Autor/Autorin: | Fischer, Michael ![]() |
Zusammenfassung: | The chabazite-type silicoaluminophosphate SAPO-34 is a promising adsorbent for applications in thermal energy storage using water adsorption–desorption cycles. In order to develop a microscopic understanding of the impact of local heterogeneities and defects on the water adsorption properties{,} the interaction of different models of SAPO-34 with water was studied using dispersion-corrected density-functional theory (DFT-D) calculations. In addition to SAPO-34 with isolated silicon atoms{,} the calculations considered models incorporating two types of heterogeneities (silicon islands{,} aluminosilicate domains){,} and two defect-containing (partially and fully desilicated) systems. DFT-D optimisations were performed for systems with small amounts of adsorbed water{,} in which all H2O molecules can interact with framework protons{,} and systems with large amounts of adsorbed water (30 H2O molecules per unit cell). At low loadings{,} the host–guest interaction energy calculated for SAPO-34 with isolated Si atoms amounts to approximately −90 kJ mol−1. While the presence of local heterogeneities leads to the creation of some adsorption sites that are energetically slightly more favourable{,} the interaction strength is drastically reduced in systems with defects. At high water loadings{,} energies in the range of −70 kJ mol−1 are obtained for all models. The DFT-D interaction energies are in good agreement with experimentally measured heats of water adsorption. A detailed analysis of the equilibrium structures was used to gain insights into the binding modes at low coverages{,} and to assess the extent of framework deprotonation and changes in the coordination environment of aluminium atoms at high water loadings. |
Schlagwort: | DFT calculations; Water adsorption; SAPO-34; Heterogeneity; Density Functional Theory | Veröffentlichungsdatum: | 28-Aug-2015 | Verlag: | The Royal Society of Chemistry | Projekt: | Funding line 04 – Independent Projects for Post-Docs | Sponsor / Fördernde Einrichtung: | Central Research Development Fund, University of Bremen | Zeitschrift/Sammelwerk: | Physical Chemistry Chemical Physics | Heft: | 38 | Startseite: | 25260 | Endseite: | 25271 | Band: | 17 | Dokumenttyp: | Artikel/Aufsatz | ISSN: | 1463-9084 | Zweitveröffentlichung: | yes | Dokumentversion: | Postprint | DOI: | 10.26092/elib/2856 | URN: | urn:nbn:de:gbv:46-elib77745 | Fachbereich: | Fachbereich 05: Geowissenschaften (FB 05) Fachgebiet Kristallographie und Geomaterialforschung |
Enthalten in den Sammlungen: | Forschungsdokumente |
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