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Canted Antiferromagnetism in Two-Dimensional Silver(II) Bis[pentafluoridooxidotungstate(VI)]

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Figshare2016-12-19 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Canted_Antiferromagnetism_in_Two-Dimensional_Silver_II_Bis_pentafluoridooxidotungstate_VI_/4479938
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By slow reaction between colorless AgIW2O2F9 and elemental F2 in liquid anhydrous HF, violet platelike single crystals of Ag­(WOF5)2 were grown. The crystal structure of Ag­(WOF5)2 consists of layers built from Ag2+ cations bridged by [WOF5]− anions and not, as previously assumed, from infinite [AgII–F]+∞ chains and [W2O2F9]− anions. A majority (97%) of the disordered AgII cations are found with square-planar coordination of F/O ligands within the same layer, and they form additional long contacts with O/F atoms originating from the neighboring layers. The remaining 3% the of Ag­(II) ions are coordinated only by F atoms in a square-planar fashion. The magnetic moments of Ag2+ from the same layer are almost perfectly antiferromagnetically aligned. Weak ferromagnetic interlayer interactions cause a small tilt (∼1.5°) of the magnetic moments, resulting in canted antiferromagnetism. Because of the lowering of the symmetry of [WOF5]− in the solid state, the vibrational spectra show more bands than expected for regular C4v symmetry. The electronic spectrum of Ag­(WOF5)2 is reported and analyzed.
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2016-12-19
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