Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth

Single crystals of four new layered uranyl phosphates, including three oxyfluoride-phosphates, were synthesized by molten flux methods using alkali chloride melts, and their structures were determined by single-crystal X-ray diffraction. Cs11[(UO2)12(PO4)3O13] (1) and Rb11[UO2)12(PO4)3O12F2] (2) con...

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Main Authors: Christian A. Juillerat, Vancho Kocevski, Theodore M. Besmann, Hans-Conrad zur Loye
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-08-01
Series:Frontiers in Chemistry
Subjects:
DFT
Online Access:https://www.frontiersin.org/article/10.3389/fchem.2019.00583/full
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spelling doaj-5210402afabf410083f1086d10a6a1902020-11-25T01:32:32ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462019-08-01710.3389/fchem.2019.00583480901Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal GrowthChristian A. Juillerat0Christian A. Juillerat1Vancho Kocevski2Vancho Kocevski3Theodore M. Besmann4Theodore M. Besmann5Hans-Conrad zur Loye6Hans-Conrad zur Loye7Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC, United StatesCenter for Hierarchical Wasteform Materials (CHWM), University of South Carolina, Columbia, SC, United StatesCenter for Hierarchical Wasteform Materials (CHWM), University of South Carolina, Columbia, SC, United StatesNuclear Engineering Program, University of South Carolina, Columbia, SC, United StatesCenter for Hierarchical Wasteform Materials (CHWM), University of South Carolina, Columbia, SC, United StatesNuclear Engineering Program, University of South Carolina, Columbia, SC, United StatesDepartment of Chemistry and Biochemistry, University of South Carolina, Columbia, SC, United StatesCenter for Hierarchical Wasteform Materials (CHWM), University of South Carolina, Columbia, SC, United StatesSingle crystals of four new layered uranyl phosphates, including three oxyfluoride-phosphates, were synthesized by molten flux methods using alkali chloride melts, and their structures were determined by single-crystal X-ray diffraction. Cs11[(UO2)12(PO4)3O13] (1) and Rb11[UO2)12(PO4)3O12F2] (2) contain uranyl phosphate layers exhibiting a new sheet topology that can be related to that of β-U3O8, while Cs4.4K0.6[(UO2)6O4F(PO4)4(UO2)] (3) and Rb4.4K0.6[(UO2)6O4F(PO4)4(UO2)] (4) contain layers of a known isomer of the prominent phosphuranylite topology. The location of the fluorine in structures 2-4 is discussed using bond valence sums. First principles calculations were used to explore why a pure oxide structure is obtained for the Cs containing phase (1) and in contrast an oxyfluoride phase for the Rb containing phase (2). Ion exchange experiments were performed on 1 and 2 and demonstrate the ability of these structures to exchange approximately half of the parent alkali cation with a target alkali cation in an aqueous concentrated salt solution. Optical measurements were performed on 1 and 2 and the UV-vis and fluorescence spectra show features characteristic of the UO22+ uranyl group.https://www.frontiersin.org/article/10.3389/fchem.2019.00583/fullflux crystal growthuranylphosphuranylitesingle crystalDFT
collection DOAJ
language English
format Article
sources DOAJ
author Christian A. Juillerat
Christian A. Juillerat
Vancho Kocevski
Vancho Kocevski
Theodore M. Besmann
Theodore M. Besmann
Hans-Conrad zur Loye
Hans-Conrad zur Loye
spellingShingle Christian A. Juillerat
Christian A. Juillerat
Vancho Kocevski
Vancho Kocevski
Theodore M. Besmann
Theodore M. Besmann
Hans-Conrad zur Loye
Hans-Conrad zur Loye
Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
Frontiers in Chemistry
flux crystal growth
uranyl
phosphuranylite
single crystal
DFT
author_facet Christian A. Juillerat
Christian A. Juillerat
Vancho Kocevski
Vancho Kocevski
Theodore M. Besmann
Theodore M. Besmann
Hans-Conrad zur Loye
Hans-Conrad zur Loye
author_sort Christian A. Juillerat
title Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
title_short Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
title_full Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
title_fullStr Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
title_full_unstemmed Observation of the Same New Sheet Topology in Both the Layered Uranyl Oxide-Phosphate Cs11[(UO2)12(PO4)3O13] and the Layered Uranyl Oxyfluoride-Phosphate Rb11[(UO2)12(PO4)3O12F2] Prepared by Flux Crystal Growth
title_sort observation of the same new sheet topology in both the layered uranyl oxide-phosphate cs11[(uo2)12(po4)3o13] and the layered uranyl oxyfluoride-phosphate rb11[(uo2)12(po4)3o12f2] prepared by flux crystal growth
publisher Frontiers Media S.A.
series Frontiers in Chemistry
issn 2296-2646
publishDate 2019-08-01
description Single crystals of four new layered uranyl phosphates, including three oxyfluoride-phosphates, were synthesized by molten flux methods using alkali chloride melts, and their structures were determined by single-crystal X-ray diffraction. Cs11[(UO2)12(PO4)3O13] (1) and Rb11[UO2)12(PO4)3O12F2] (2) contain uranyl phosphate layers exhibiting a new sheet topology that can be related to that of β-U3O8, while Cs4.4K0.6[(UO2)6O4F(PO4)4(UO2)] (3) and Rb4.4K0.6[(UO2)6O4F(PO4)4(UO2)] (4) contain layers of a known isomer of the prominent phosphuranylite topology. The location of the fluorine in structures 2-4 is discussed using bond valence sums. First principles calculations were used to explore why a pure oxide structure is obtained for the Cs containing phase (1) and in contrast an oxyfluoride phase for the Rb containing phase (2). Ion exchange experiments were performed on 1 and 2 and demonstrate the ability of these structures to exchange approximately half of the parent alkali cation with a target alkali cation in an aqueous concentrated salt solution. Optical measurements were performed on 1 and 2 and the UV-vis and fluorescence spectra show features characteristic of the UO22+ uranyl group.
topic flux crystal growth
uranyl
phosphuranylite
single crystal
DFT
url https://www.frontiersin.org/article/10.3389/fchem.2019.00583/full
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