Silicate-germanate K2Y[(Si3Ge)O10(OH)] with unusual complex corrugated layer and its correlation to ring silicate gerenite and chain silicate chkalovite

Author:

Topnikova Anastasiia P.1,Belokoneva Elena L.1,Dimitrova Olga V.1,Volkov Anatoly S.1,Zorina Leokadiya V.2

Affiliation:

1. Lomonosov Moscow State University , Faculty of Geology, Department of Crystallography , Moscow , Russian Federation

2. Institute of Solid State Physics RAS, Chernogolovka , Moscow Region , Russian Federation

Abstract

Abstract A new silicate-germanate K2Y[(Si3Ge)O10(OH)] was synthesized hydrothermally in a system Y2O3:GeO2:SiO2 = 1:1:2 (T = 280 °C; P = 90–100 atm.); K2CO3 was added to the solution as a mineralizer. Single-crystal X-ray diffraction experiment was carried out at low temperature (150 K). The unit cell parameters are a = 10.4975(4), b = 6.9567(2), c = 15.4001(6) Å, β = 104.894(4)°; V = 1086.86(7) Å3; space group is P 21/c. A novel complex anion is presented by corrugated (Si,Ge) tetrahedral layers connected by couples of YO6 octahedra into the mixed microporous framework with the channels along b and a axes, the maximal size of cross-section is ~5.6 Å. This structure has similarity with the two minerals: ring silicate gerenite (Ca,Na)2(Y,REE)3Si6O18 · 2H2O and chain silicate chkalovite Na2BeSi2O6. Six-member rings with 1̅ symmetry as in gerenite are distinguished in the new layer. They are mutually perpendicular to each other and connected by additional tetrahedra. Straight crossing chains in chkalovite change to zigzag four-link chains in the new silicate-germanate layer.

Publisher

Walter de Gruyter GmbH

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science

Reference34 articles.

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4. B. A. Maksimov, V. V. Ilyukhin, Yu. A. Kharitonov, N. V. Belov, Crystal structure of yttrium oxyorthosilicate Y2O3SiO2 and Y2SiO5. Dual function of yttrium. Kristallografiya1970, 15, 926.

5. B. V. Merinov, V. V. Ilyukhin, B. A. Maksimov, N. V. Belov, The refinement of the crystal structure of Na,Y-orthosilicate NaYSiO4. Dokl. Akad. Nauk SSSR1979, 248, 1108.

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