Framework Uranyl Silicates: Crystal Chemistry and a New Route for the Synthesis

Author:

Nazarchuk Evgeny V.1,Siidra Oleg I.12ORCID,Charkin Dmitri O.3,Tagirova Yana G.1

Affiliation:

1. Department of Crystallography, Saint-Petersburg State University, University emb. 7/9, 199034 St. Petersburg, Russia

2. Kola Science Center, Russian Academy of Sciences, 184200 Apatity, Russia

3. Department of Chemistry, Moscow State University, Vorobievy Gory 1, bd. 3, 119991 Moscow, Russia

Abstract

To date, uranyl silicates are mostly represented by minerals in nature. However, their synthetic counterparts can be used as ion exchange materials. A new approach for the synthesis of framework uranyl silicates is reported. The new compounds Rb2[(UO2)2(Si8O19)](H2O)2.5 (1), (K,Rb)2[(UO2)(Si10O22)] (2), [Rb3Cl][(UO2)(Si4O10)] (3) and [Cs3Cl][(UO2)(Si4O10)] (4) were prepared at harsh conditions in “activated” silica tubes at 900 °C. The activation of silica was performed using 40% hydrofluoric acid and lead oxide. Crystal structures of new uranyl silicates were solved by direct methods and refined: 1 is orthorhombic, Cmce, a = 14.5795(2) Å, b = 14.2083(2) Å, c = 23.1412(4) Å, V = 4793.70(13) Å3, R1 = 0.023; 2 is monoclinic, C2/m, a = 23.0027(8) Å, b = 8.0983(3) Å, c = 11.9736(4) Å, β = 90.372(3) °, V = 2230.43(14) Å3, R1 = 0.034; 3 is orthorhombic, Imma, a = 15.2712(12) Å, b = 7.9647(8) Å, c = 12.4607(9) Å, V = 1515.6(2) Å3, R1 = 0.035, 4 is orthorhombic, Imma, a = 15.4148(8) Å, b = 7.9229(4) Å, c = 13.0214(7) Å, V = 1590.30(14) Å3, R1 = 0.020. Their framework crystal structures contain channels up to 11.62 × 10.54 Å filled by various alkali metals.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

General Materials Science

Reference63 articles.

1. Formation conditions of uranium minerals in oxidation zone of uranium deposits;Belova;Geol. Ore Deposit.,2003

2. Oxidative corrosion of spent UO2 fuel in vapor and dripping groundwater at 90 °C;Finch;MRS Online Proc. Libr.,1999

3. Plášil, J. (2018). Mineralogy, crystallography and structural complexity of natural uranyl silicates. Minerals, 8.

4. The Structure of Boltwoodite and Implications of Solid Solution toward Sodium Boltwoodite;Burns;Can. Mineral.,1998

5. Cs-exchanged cuprosklodowskite;Zolotarev;Miner. Adv. Mater.,2011

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