The Si-Ge substitutional series in the chiral STW zeolite structure type

Reus T. Rigo, Salvador R.G. Balestra, Said Hamad, Rocio Bueno-Perez, A. Rabdel Ruiz-Salvador, Sofía Calero, Miguel A. Camblor

Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

34 Citaten (Scopus)

Samenvatting

The whole compositional range (Gef = Ge/(Ge + Si) = 0 to 1) of zeolite STW has been synthesized and studied by a comprehensive combined experimental-theoretical approach. The yield of the zeolite goes through a maximum and then drops at the GeO2 side of the series, following the inverse of the calculated free energy curve. The unit cell generally expands, roughly linearly, as the Gef increases, but a notable resilience to expansion is observed at the high silica side. This can be attributed to the more rigid character of SiO2 and the ability of Ge units to deform. Density functional theory calculations provide a new assignment of the previously controversial 19F MAS NMR resonances for occluded fluoride, which is based not only on the number of Ge atoms in the double-4-ring units but also on the way they are associated (namely, no Ge, isolated Ge, Ge pairs or closed Ge clusters). While we found an overall good agreement between the experimental and theoretical trends in preferential occupation of different crystallographic sites by Ge, the theoretical models show more sharp and abrupt tendencies, likely due both to limitations of the approach and to kinetic factors that allow metastable configurations to actually exist.

Originele taal-2Engels
Pagina's (van-tot)15110-15122
Aantal pagina's13
TijdschriftJournal of Materials Chemistry A
Volume6
Nummer van het tijdschrift31
DOI's
StatusGepubliceerd - 21 aug. 2018
Extern gepubliceerdJa

Financiering

The authors thank the Spanish Ministry of Science and Competitiveness for funding (Projects MAT2015-71117-R and CTP2016-80206-P). R. T. Rigo thanks CAPES (Brazil) for a PhD fellowship (process 99999.012012/2013-00). S. R. G. Balestra thanks the Spanish State Secretariat for Research, Development and Innovation for his Predoctoral fellowship (BES-2014-067825 from CTQ2013-48396-P). We thank R. Grau-Crespo for suggesting the use of the special quasirandom structures methods. We are also indebted to the ERSF (Grenoble) and the BM25 Spline staff, particularly to G. Castro and A. Serrano as well as to L. A. Villaescusa (Valencia) for help in collecting the synchrotron XRD data and for helpful comments and suggestions. We also thank A. Valera for technical expertise (FESEM). Computing facilities by Alhambra supercomputing center (Universidad de Granada) are grateful acknowledged.

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