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- W4316496632 abstract "Abstract The new thiostannate Na 4 Sn 2 S 6 was prepared by directed crystal water removal from the hydrate Na 4 Sn 2 S 6 ⋅ 5H 2 O at moderate temperatures. While the structure of the hydrate comprises isolated [Sn 2 S 6 ] 4− anions, that of the anhydrate contains linear chains composed of corner‐sharing SnS 4 tetrahedra, a structural motif not known in thiostannate chemistry. This structural rearrangement requires bond‐breakage in the [Sn 2 S 6 ] 4− anion, movements of the fragments of the opened [Sn 2 S 6 ] 4− anion and Sn−S−Sn bond formation. Simultaneously, the coordination environment of the Na + cations is significantly altered and the in situ formed NaS 5 polyhedra are joined by corner‐ and edge‐sharing to form a six‐membered ring. Time‐dependent in situ X‐ray powder diffraction evidences very fast rehydration into Na 4 Sn 2 S 6 ⋅ 5H 2 O during storage in air atmosphere, but recovery of the initial crystallinity requires several days. Impedance spectroscopy demonstrates a mediocre room‐temperature Na + ion conductivity of 0.31 μS cm −1 and an activation energy for ionic transport of E a =0.75 eV." @default.
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- W4316496632 date "2023-01-27" @default.
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- W4316496632 title "Directed Dehydration of Na<sub>4</sub>Sn<sub>2</sub>S<sub>6</sub> ⋅ 5H<sub>2</sub>O Generates the New Compound Na<sub>4</sub>Sn<sub>2</sub>S<sub>6</sub>: Crystal Structure and Selected Properties" @default.
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- W4316496632 doi "https://doi.org/10.1002/ejic.202200687" @default.
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