Borosulfates Hosting Se 4 2+ Ions—Crystal Structures, Chemical Bonding, Optical Spectroscopy, and Magnetism

ABSTRACT Despite consistent growth in the number of compounds known to host homo‐ and hetero polycations of group 16 elements, only two, Se 4 [HS 2 O 7 ] 2 and Se 4 [S 4 O 13 ], provided an exclusively oxidic coordination environment, the former being the first structural characterization of the Se 4 2+ cation in 1968. With the first selenium borosulfates Se 4 [B(S 2 O 7 ) 2 ] 2 (SO 3 ), Se 4 [B(S 2 O 7 ) 2 ] 2 , Se 4 [B 2 (SO 4 ) 2 (S 2 O 7 ) 2 ]‐I, Se 4 [B 2 (SO 4 ) 2 (S 2 O 7 ) 2 ]‐II, and Se 4 [B 2 (SO 4 ) 4 ] we extended this list by five compounds. Aside from Se 4 [HS 2 O 7 ] 2 , Se 4 [S 4 O 13 ] was synthesized but never structurally characterized. In this contribution we also evaluate the crystal structure of the tetrasulfate Se 4 [S 4 O 13 ]. All compounds are synthesized under solvothermal conditions. Powder reflectance spectra of the selenium borosulfates are in accordance with the yellow body color of the compounds. Magnetic measurements confirm the diamagnetic character of the Se 4 2+ ions, in agreement with the calculations. Temperature‐programmed powder X‐ray diffraction reveals that the borosulfates of the study form sequentially with increasing decomposition temperature, enabling their selective synthesis. Furthermore, we performed infrared spectroscopy, Rietveld refinements and thermal analyses.

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Journal
Angewandte Chemie
Published
2026-09-19
DOI
https://doi.org/10.1002/ange.4300417
Primary Topic
Crystal Structures and Properties
Type
article
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Borosulfates Hosting Se 4 2+ Ions—Crystal Structures, Chemical Bonding, Optical Spectroscopy, and Magnetism

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Borosulfates Hosting Se 4 2+ Ions—Crystal Structures, Chemical Bonding, Optical Spectroscopy, and Magnetism

Jan Langwald, Rainer Pöttgen, Henning A. Höppe, Mathias S. Wickleder, Lars Schumacher, Erich Turgunbajew, Jörn Bruns, Richard Dronskowski, Robert E. Dinnebier, Linda S. Reitz, Marios Symeonidis, Sara N. Özbay
article en

Abstract

ABSTRACT Despite consistent growth in the number of compounds known to host homo‐ and hetero polycations of group 16 elements, only two, Se 4 [HS 2 O 7 ] 2 and Se 4 [S 4 O 13 ], provided an exclusively oxidic coordination environment, the former being the first structural characterization of the Se 4 2+ cation in 1968. With the first selenium borosulfates Se 4 [B(S 2 O 7 ) 2 ] 2 (SO 3 ), Se 4 [B(S 2 O 7 ) 2 ] 2 , Se 4 [B 2 (SO 4 ) 2 (S 2 O 7 ) 2 ]‐I, Se 4 [B 2 (SO 4 ) 2 (S 2 O 7 ) 2 ]‐II, and Se 4 [B 2 (SO 4 ) 4 ] we extended this list by five compounds. Aside from Se 4 [HS 2 O 7 ] 2 , Se 4 [S 4 O 13 ] was synthesized but never structurally characterized. In this contribution we also evaluate the crystal structure of the tetrasulfate Se 4 [S 4 O 13 ]. All compounds are synthesized under solvothermal conditions. Powder reflectance spectra of the selenium borosulfates are in accordance with the yellow body color of the compounds. Magnetic measurements confirm the diamagnetic character of the Se 4 2+ ions, in agreement with the calculations. Temperature‐programmed powder X‐ray diffraction reveals that the borosulfates of the study form sequentially with increasing decomposition temperature, enabling their selective synthesis. Furthermore, we performed infrared spectroscopy, Rietveld refinements and thermal analyses.

Angewandte Chemie
Augsburg University (US), Max Planck Society (DE), University of Augsburg (DE), University of Cologne (DE), University of Münster (DE), Max Planck Institute for Solid State Research (DE), Technische Universität Berlin (DE), RWTH Aachen University (DE)
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Crystal Structures and Properties
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