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Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure

Single crystals of Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) [silver zinc iron phosphate (1.64/1.64/1.36/3)] have been synthesized by a conventional solid-state reaction and structurally characterized by single-crystal X-ray diffraction. The title compound crystallizes with an alluaudite-like structure. Al...

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Autores principales: Khmiyas, Jamal, Assani, Abderrazzak, Saadi, Mohamed, El Ammari, Lahcen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472751/
https://www.ncbi.nlm.nih.gov/pubmed/32939306
http://dx.doi.org/10.1107/S2056989020011408
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author Khmiyas, Jamal
Assani, Abderrazzak
Saadi, Mohamed
El Ammari, Lahcen
author_facet Khmiyas, Jamal
Assani, Abderrazzak
Saadi, Mohamed
El Ammari, Lahcen
author_sort Khmiyas, Jamal
collection PubMed
description Single crystals of Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) [silver zinc iron phosphate (1.64/1.64/1.36/3)] have been synthesized by a conventional solid-state reaction and structurally characterized by single-crystal X-ray diffraction. The title compound crystallizes with an alluaudite-like structure. All atoms of the structure are in general positions except for four, which reside on special positions of the space group, C2/c. The Ag(+) cations reside at full occupancy on inversion centre sites and at partial occupancy (64%) on a twofold rotation axis. In this structure, the unique Fe(3+) ion with one of the two Zn(2+) cations are substitutionally disordered on the same general position (Wyckoff site 8f), with a respective ratio of 0.68/0.32 (occupancies were fixed so as to ensure electrical neutrality for the whole structure). The remaining O and P atoms are located in general positions. The three-dimensional framework of this structure consists of kinked chains of edge-sharing octa­hedra stacked parallel to [10[Image: see text]]. These chains are built up by a succession of [MO(6)] (M = Zn/Fe or Zn) units. Adjacent chains are connected by the PO(4) anions, forming sheets oriented perpendicular to [010]. These inter­connected sheets generate two types of channels parallel to the c axis, in which the Ag(+) cations are located. The validity and adequacy of the proposed structural model of Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) was established by means of bond-valence-sum (BVS) and charge-distribution (CHARDI) analysis tools.
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spelling pubmed-74727512020-09-15 Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure Khmiyas, Jamal Assani, Abderrazzak Saadi, Mohamed El Ammari, Lahcen Acta Crystallogr E Crystallogr Commun Research Communications Single crystals of Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) [silver zinc iron phosphate (1.64/1.64/1.36/3)] have been synthesized by a conventional solid-state reaction and structurally characterized by single-crystal X-ray diffraction. The title compound crystallizes with an alluaudite-like structure. All atoms of the structure are in general positions except for four, which reside on special positions of the space group, C2/c. The Ag(+) cations reside at full occupancy on inversion centre sites and at partial occupancy (64%) on a twofold rotation axis. In this structure, the unique Fe(3+) ion with one of the two Zn(2+) cations are substitutionally disordered on the same general position (Wyckoff site 8f), with a respective ratio of 0.68/0.32 (occupancies were fixed so as to ensure electrical neutrality for the whole structure). The remaining O and P atoms are located in general positions. The three-dimensional framework of this structure consists of kinked chains of edge-sharing octa­hedra stacked parallel to [10[Image: see text]]. These chains are built up by a succession of [MO(6)] (M = Zn/Fe or Zn) units. Adjacent chains are connected by the PO(4) anions, forming sheets oriented perpendicular to [010]. These inter­connected sheets generate two types of channels parallel to the c axis, in which the Ag(+) cations are located. The validity and adequacy of the proposed structural model of Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) was established by means of bond-valence-sum (BVS) and charge-distribution (CHARDI) analysis tools. International Union of Crystallography 2020-08-25 /pmc/articles/PMC7472751/ /pubmed/32939306 http://dx.doi.org/10.1107/S2056989020011408 Text en © Khmiyas et al. 2020 http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Communications
Khmiyas, Jamal
Assani, Abderrazzak
Saadi, Mohamed
El Ammari, Lahcen
Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title_full Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title_fullStr Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title_full_unstemmed Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title_short Synthesis, crystal structure determination of a novel phosphate Ag(1.64)Zn(1.64)Fe(1.36)(PO(4))(3) with an alluaudite-like structure
title_sort synthesis, crystal structure determination of a novel phosphate ag(1.64)zn(1.64)fe(1.36)(po(4))(3) with an alluaudite-like structure
topic Research Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472751/
https://www.ncbi.nlm.nih.gov/pubmed/32939306
http://dx.doi.org/10.1107/S2056989020011408
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