2016
DOI: 10.1021/acs.inorgchem.5b02071
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11B MAS NMR and First-Principles Study of the [OBO3] Pyramids in Borates

Abstract: Borates are built from the [Bϕ3] planar triangles and the [Bϕ4] tetrahedral groups, where ϕ denotes O or OH. However, the [Bϕ4] groups in some borates are highly distorted to include three normal B-O bonds and one anomalously long B-O bond and, therefore, are best described as the [OBO3] pyramids. Four synthetic borates of the boracite-type structures (Mg3B7O13Br, Cu3B7O13Br, Zn3B7O13Cl, and Mg3B7O13Cl) containing a range of [OBO3] pyramids were investigated by multifield (7.05, 14.1, and 21.1 T) (11)B magic-a… Show more

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Cited by 15 publications
(21 citation statements)
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“…The structural model built from X-ray diffraction results underwent a geometrical optimization prior to carrying out NMR calculations. In our previous borate studies, ,,,, this approach was necessary to improve the calculated results because it is difficult to accurately locate the positions of light elements such as H, B, and F, via X-ray diffraction. ,, As such, a comparison of the theoretically calculated NMR parameters (chemical shielding and EFG tensors) with the experimentally measured NMR parameters (δ iso , C Q , η) may provide refinements of the structural models obtained via diffraction methods.…”
Section: Theoretical Backgroundmentioning
confidence: 99%
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“…The structural model built from X-ray diffraction results underwent a geometrical optimization prior to carrying out NMR calculations. In our previous borate studies, ,,,, this approach was necessary to improve the calculated results because it is difficult to accurately locate the positions of light elements such as H, B, and F, via X-ray diffraction. ,, As such, a comparison of the theoretically calculated NMR parameters (chemical shielding and EFG tensors) with the experimentally measured NMR parameters (δ iso , C Q , η) may provide refinements of the structural models obtained via diffraction methods.…”
Section: Theoretical Backgroundmentioning
confidence: 99%
“…The synthetic series studied includes boracite, cubic-Mg 3 B 7 O 13 Br, MgB 4 O 7 , kotoite, and suanite. Boracite and cubic-Mg 3 B 7 O 13 Br samples were synthesized via the boric acid flux method . Briefly, for the sample of boracite this involved heating 1 g of MgCl 2 between two 0.5 g layers of H 3 BO 3 in a Teflon-lined stainless steel autoclave at 240 °C for 72 h; for the Mg 3 B 7 O 13 Br sample, 0.3 g of MgBr 2 and 0.5 g B 2 O 3 were heated to 500 °C in an evacuated silica tube for 72 h. Synthesis of MgB 4 O 7 involved heating a MgO:B 2 O 3 mixture at the molar ratio of 1:3 in a platinum crucible at 750 °C and atmospheric pressure for 24 h. Kotoite and suanite were synthesized by dissolving MgCl 2 ·6H 2 O and H 3 BO 3 in deionized water at stoichiometric proportions (3:2 for kotoite and 1:1 for suanite), followed by heating of the solutions to 110 °C until the stoichiometric gel products formed by evaporation (∼24 h).…”
Section: Experimental Sectionmentioning
confidence: 99%
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