New Tellurites: Syntheses, Structures, and Characterization of K<sub>2</sub>Te<sub>4</sub>O<sub>9</sub>·3.2H<sub>2</sub>O, KGaTe<sub>6</sub>O<sub>14</sub>, and KGaTe<sub>2</sub>O<sub>6</sub>·1.8H<sub>2</sub>O
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Single crystals of K2Te4O9·3.2H2O, KGaTe6O14, and KGaTe2O6·1.8H2O have been synthesized by supercritical hydrothermal methods using KOH, TeO2, and Ga2O3 as reagents. K2Te4O9·3.2H2O has a layered structure, whereas KGaTe6O14 and KGaTe2O6·1.8H2O have three-dimensional frameworks. In addition, KGaTe2O6·1.8H2O has an unprecedented open-framework tellurite topology that permits the ion exchange of Li+ and Na+. In addition, the ion-exchanged phases are highly crystalline. Crystal data: K2Te4O9·3.2H2O, triclinic, space group P1 (No. 1), with a = 7.5046(5) Å, b = 10.7097(8) Å, c = 10.7159(8) Å, α = 60.849(1)°, β = 69.918(1)°, γ = 85.968(1)°, and Z = 2; KGaTe6O14, cubic, space group Pa-3 (No. 205), with a = 10.9267(3) Å and Z = 4; KGaTe2O6·1.8H2O, triclinic, P-1 (No. 2), with a = 8.8361(6) Å, b = 9.1648(6) Å, c = 9.9531(7) Å, α = 115.395(1)°, β = 93.973(1)°, γ = 116.011(1)°, and Z = 3.



