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Synthesis, crystal structure, spectroscopic and thermal properties of [Et4N][Ta6Br12(H2O)6]Br4·4H2O (Et=ethyl)—A new compound with the paramagnetic [Ta6Br12]3+ cluster core (CROSBI ID 146674)

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Perić, Berislav ; Jozić, Dražan ; Planinić, Pavica ; Brničević, Nevenka ; Giester, Gerald Synthesis, crystal structure, spectroscopic and thermal properties of [Et4N][Ta6Br12(H2O)6]Br4·4H2O (Et=ethyl)—A new compound with the paramagnetic [Ta6Br12]3+ cluster core // Journal of solid state chemistry, 182 (2009), 9; 2443-2450. doi: 10.1016/j.jssc.2009.06.026

Podaci o odgovornosti

Perić, Berislav ; Jozić, Dražan ; Planinić, Pavica ; Brničević, Nevenka ; Giester, Gerald

engleski

Synthesis, crystal structure, spectroscopic and thermal properties of [Et4N][Ta6Br12(H2O)6]Br4·4H2O (Et=ethyl)—A new compound with the paramagnetic [Ta6Br12]3+ cluster core

A new hexanuclear cluster compound, [Et4N][Ta6Br12(H2O)6]Br4·4H2O (Et=ethyl) (1), with the paramagnetic [Ta6Br12]3+ cluster entity, was synthesized and characterized by elemental and TG/DTA analyses, IR and UV/Vis spectroscopy and by a single-crystal X-ray diffraction study. The presence of the paramagnetic [Ta6Br12]3+ unit was confirmed also by the room-temperature magnetic and EPR measurements. The compound crystallizes in the tetragonal I41/a space group, with a=14.299(5), c=21.241(5) Å, Z=4, R1(F)/wR2(F2)=0.0296/0.0811. The structure contains discrete [Ta6Br12(H2O)6]3+ cations with an octahedron of metal atoms edge-bridged by bromine atoms and with water molecules occupying all six terminal positions. The cluster units are positioned in the vertices of the three-dimensional (pseudo)diamond lattice. The structure shows similarities with literature reported structures of cluster compounds crystallizing in the diamond (Fd3 ̅m) space group.

synthesis ; crystal structure ; IR and UV/Vis spectroscopy ; paramagnetic hexanuclear tantalum cluster ; [Ta_6Br_12]3+ cluster units

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Podaci o izdanju

182 (9)

2009.

2443-2450

objavljeno

0022-4596

1095-726X

10.1016/j.jssc.2009.06.026

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Kemija

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