Issue 5, 2024

Crystal structure, infrared spectroscopy and thermodynamic properties of a manganese member of the ellenbergerite family

Abstract

Single-crystals of manganese hydroxide hydrogen vanadate divanadate, Mn6.75(OH)3H1.20(VO4)4-2z(V2O7)z (z = 0.15), have been synthesized hydrothermally. Its hexagonal crystal structure, sp. gr. P63mc, related to mineral ellenbergerite, has been determined by single-crystal X-ray diffraction. It features a three-dimensional framework of vertex- and face-sharing Mn2+-centered octahedra with defective Mn2+-octahedral chains and disordered V2O7, HVO4 and H2VO4 groups located in hexagonal and triangular type channels. The presence of these groups has been confirmed by Fourier transform infrared spectroscopy. According to magnetization and specific heat data, Mn6.75(OH)3H1.20(VO4)4-2z(V2O7)z (z = 0.15) experiences ordering into a canted antiferromagnetic state at TN = 42.5 K.

Graphical abstract: Crystal structure, infrared spectroscopy and thermodynamic properties of a manganese member of the ellenbergerite family

Supplementary files

Article information

Article type
Paper
Submitted
07 Nov 2023
Accepted
21 Dec 2023
First published
22 Dec 2023

New J. Chem., 2024,48, 1952-1957

Crystal structure, infrared spectroscopy and thermodynamic properties of a manganese member of the ellenbergerite family

L. V. Shvanskaya, P. V. Krikunova, T. M. Vasilchikova, E. Y. Borovikova, O. S. Volkova and A. N. Vasiliev, New J. Chem., 2024, 48, 1952 DOI: 10.1039/D3NJ05142K

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