New alluaudite-related triple molybdates Na 25 Cs 8 R 5 (MoO 4 ) 24 (R = Sc, In): synthesis, crystal structures and properties
New triple molybdates Na 25 Cs 8 R 5 (MoO 4 ) 24 (R = Sc, In) were prepared as powders and ceramics by solid state reactions, and their single crystals were also obtained from melts by spontaneous crystallization. The structures were determined by single crystal XRD analysis. The electrical conducti...
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Veröffentlicht in: | New journal of chemistry 2017, Vol.41 (13), p.5450-5457 |
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Hauptverfasser: | , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | New triple molybdates Na
25
Cs
8
R
5
(MoO
4
)
24
(R = Sc, In) were prepared as powders and ceramics by solid state reactions, and their single crystals were also obtained from melts by spontaneous crystallization. The structures were determined by single crystal XRD analysis. The electrical conductivity of ceramics was measured by impedance spectroscopy. The crystal structures were determined in monoclinic sp. gr.
P
2
1
/
c
,
a
= 14.0069(3) Å,
b
= 12.6498(3) Å,
c
= 28.6491(6) Å,
β
= 90.007(1)° (Sc) and
a
= 14.0062(2) Å,
b
= 12.6032(2) Å,
c
= 28.7138(4) Å,
β
= 90.001(1)° (In). Together with triclinic Na
25
Cs
8
Fe
5
(MoO
4
)
24
, the titled compounds form a distinctive family of pseudo-orthorhombic alluaudite-related structures with the parent sp. gr.
Pbca
. Its structural features are alluaudite-like polyhedral layers composed of pairs of edge-shared (R, Na)O
6
and NaO
6
octahedra connected by bridging MoO
4
tetrahedra. The layers are joined together by means of interlayer MoO
4
tetrahedra, thus forming open 3D frameworks with cavities filled with Cs
+
and Na
+
ions. The manner of stacking layers is somewhat different from the alluaudite type. The compounds undergo phase transitions at 668 (Sc) and 725 (In) K accompanied by an abrupt increase of electrical conductivity presumably Na
+
-ionic in nature. Above these transitions, the conductivity is as high as 10
−3
S cm
−1
, which makes Na
25
Cs
8
R
5
(MoO
4
)
24
(R = Sc, In) promising solid state electrolytes. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/C7NJ00202E |