Authors
Akihiko Nakatsuka, Yuya Miyake, Mami Shimokawa, Kazuake Iishi, Makoto Tokuda, Akira Yoshiasa
Published in
Acta crystallographica. Section C, Structural chemistry. Sep 01, 2026. Epub Sep 01, 2026.
Abstract
The structure refinements of the two Na-bearing vanadate garnet series Ca2NaM2V3O12 (M = Co, Ni) and Pb2NaM2V3O12 (M = Mg, Co, Ni) were conducted using single-crystal X-ray diffraction, together with the rerefinements of previously reported Ca2NaM2V3O12 (M = Mg, Mn, Zn, Cd). The crystal chemistry of both vanadate garnet series was discussed with special attention to atomic displacement behaviours, from the combination of the present results with those reported previously for various other garnet compounds. In the investigated compounds, except for Ca2NaCd2V3O12, the dodecahedral-dodecahedral and dodecahedral-octahedral shared edge lengths are unusually longer than or comparable to the corresponding unshared ones, contradicting Pauling's third rule. However, judging from the observation in the Ca2NaM2V3O12 series with a larger number of samples, the ratios of both shared edge lengths to the corresponding unshared ones decrease linearly with increasing octahedral-site cation size. Consequently, in Ca2NaCd2V3O12, with the largest octahedral cation (Cd2+) among those investigated here, the dodecahedral-dodecahedral and dodecahedral-octahedral shared edge lengths are significantly shortened compared with the corresponding unshared ones. These observations suggest that the relationships between both shared edge lengths and the corresponding unshared ones respond flexibly to structural geometric constraints depending on the octahedral-site cation size, rather than being subjected to Pauling's third rule. This flexibility results from the insignificant cation-cation repulsions across these shared edges, which are due to the lower mean valence (1.67+) and larger size of the dodecahedral cations than those of previously reported other garnets. In contrast, in all the investigated compounds, including Ca2NaCd2V3O12, the dodecahedral-tetrahedral shared edge lengths are sufficiently shorter than the tetrahedral unshared ones because of the strong repulsion between the dodecahedral and tetrahedral cations brought about by the larger valence of V5+ at the tetrahedral site. This strong repulsion should result in the smallest mean-square displacements of the tetrahedral cations in the direction of adjacent dodecahedral cations. However, in the Pb2NaM2V3O12 series, the displacements are largest in this direction. This peculiar property is generally observed when the dodecahedral sites are occupied by different cation species with different valences and largely different sizes, as in this series.
PMID:
42634863
Bibliographic data and abstract were imported from PubMed on 24 Aug 2026.
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