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Ba4Al7Li28.08O26.92N1.08, the Barium Oxonitridolithoaluminate with a Highly Condensed LiO4 Tetrahedra Framework.


ABSTRACT: The new compound Ba4Al7Li28.08O26.92N1.08 consists of AlO4/AlO3N tetrahedra, 10-fold coordinated Ba2+ cations, and a highly condensed edge- and corner-sharing LiO4 tetrahedra framework, which leads to a degree of condensation greater than 1. The first barium oxonitridolithoaluminate was synthesized by a high-temperature solid-state reaction in a weld-shut tantalum ampoule and the crystal structure has been determined by single-crystal X-ray diffraction. Ba4Al7Li28.08O26.92N1.08 crystallizes in the monoclinic space group P21/m (no. 11) with the lattice parameters a = 1052.41(3), b = 615.93(2), c = 1088.45(4) pm, β = 98.86(1)°, and a volume of V = 0.69712(4) nm3. In addition, Ba4Al7Li28.08O26.92N1.08 doped with the activator ion Eu2+, exhibits a broad band emission with a maximum at λmax = 524 nm (2.34 eV) with a fwhm of 112 nm (4373 cm-1/0.54 eV), which can be described by a superposition of two adjusted emission bands at λmax = 515 nm (2.41 eV) with a fwhm of 70 nm (2704 cm-1/0.34 eV), and at λmax = 574 nm (2.18 eV) with a fwhm of 127 nm (4127 cm-1/0.51 eV).

SUBMITTER: Wimmer DS 

PROVIDER: S-EPMC9832532 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Ba<sub>4</sub>Al<sub>7</sub>Li<sub>28.08</sub>O<sub>26.92</sub>N<sub>1.08</sub>, the Barium Oxonitridolithoaluminate with a Highly Condensed LiO<sub>4</sub> Tetrahedra Framework.

Wimmer Daniel S DS   Seibald Markus M   Baumann Dominik D   Wurst Klaus K   Huppertz Hubert H  

Inorganic chemistry 20221216 1


The new compound Ba<sub>4</sub>Al<sub>7</sub>Li<sub>28.08</sub>O<sub>26.92</sub>N<sub>1.08</sub> consists of AlO<sub>4</sub>/AlO<sub>3</sub>N tetrahedra, 10-fold coordinated Ba<sup>2+</sup> cations, and a highly condensed edge- and corner-sharing LiO<sub>4</sub> tetrahedra framework, which leads to a degree of condensation greater than 1. The first barium oxonitridolithoaluminate was synthesized by a high-temperature solid-state reaction in a weld-shut tantalum ampoule and the crystal structure  ...[more]

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