The local environment of iron in FeBTC, a metal organic framework commercially known as Basolite F300, is investigated combining XANES and EXAFS studies of the iron K-edge. The building block of the FeBTC can be described as an iron acetate moiety. Dehydration induces a change in the coordination of the first shell while preserving the network. We propose that the local structure around Fe atoms does not undergo a rearrangement, thus, leading to the formation of an open site. The analysis conveys that the FeBTC is a disordered network of locally ordered blocks.

Sciortino, L., Alessi, A., Messina, F., Buscarino, G., Gelardi, F.M. (2015). Structure of the FeBTC Metal–Organic Framework: A Model Based on the Local Environment Study. JOURNAL OF PHYSICAL CHEMISTRY. C, 119(14), 7826-7830 [10.1021/acs.jpcc.5b01336].

Structure of the FeBTC Metal–Organic Framework: A Model Based on the Local Environment Study

SCIORTINO, Luisa;ALESSI, Antonino;MESSINA, Fabrizio;BUSCARINO, Gianpiero
;
GELARDI, Franco Mario
2015-01-01

Abstract

The local environment of iron in FeBTC, a metal organic framework commercially known as Basolite F300, is investigated combining XANES and EXAFS studies of the iron K-edge. The building block of the FeBTC can be described as an iron acetate moiety. Dehydration induces a change in the coordination of the first shell while preserving the network. We propose that the local structure around Fe atoms does not undergo a rearrangement, thus, leading to the formation of an open site. The analysis conveys that the FeBTC is a disordered network of locally ordered blocks.
2015
Sciortino, L., Alessi, A., Messina, F., Buscarino, G., Gelardi, F.M. (2015). Structure of the FeBTC Metal–Organic Framework: A Model Based on the Local Environment Study. JOURNAL OF PHYSICAL CHEMISTRY. C, 119(14), 7826-7830 [10.1021/acs.jpcc.5b01336].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/128394
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