Room temperature structure and transport properties of the incommensurate modulated LaNb 0.88 W 0.12 O 4.06

Cheng Li, Stevin S. Pramana, Stephen J. Skinner

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10 Scopus citations

Abstract

The crystal structure of a (3 + 2)D incommensurate modulated LaNb 0.88 W 0.12 O 4.06 phase, a novel oxygen ionic conductor, is refined using a combination of synchrotron X-ray diffraction and electron diffraction data. The superspace group I2/c(α 11 )00(α 22 )00 (a = 5.4131(1) Å, b = 11.6432(2) Å, c = 5.2963(1) Å, β = 91.540(1)°, q 1 = 0.2847(5)a + 0.1098(9)c and q 2 = -0.1266(9)a∗ + 0.2953(1)c∗) was chosen for the refinement. Similar to other scheelite type modulated structures, the modulation of LaNb 0.88 W 0.12 O 4.06 stems from the cation occupancy ordering in the xz plane. To facilitate the modulated cation sub-lattice, and to compensate for the difference in their size and charge, the B site polyhedra are distorted by stretching the B-O bond lengths. Consequently, an extension in the B site coordination number from 6 to 8 is observed in the modulated phase. An interconnected 3D network of BO x polyhedra, similar to that of modulated CeNbO 4.25 , is obtained as a result of the structure modulation, which is not available in the unmodulated parent structure. Tracer diffusivity measurements indicate that the composition is an oxygen ion conductor, which relies on an intersticalcy conduction mechanism. Oxygen tracer diffusivity of 2.46 × 10 -9 cm 2 s -1 , at 750 °C is reported.

Original languageEnglish
Pages (from-to)1633-1646
Number of pages14
JournalDalton Transactions
Volume48
Issue number5
DOIs
StatePublished - 2019
Externally publishedYes

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