Home The crystal structure of Tb3B5O11(OH)2
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The crystal structure of Tb3B5O11(OH)2

  • Tobias A. Teichtmeister and Hubert Huppertz ORCID logo EMAIL logo
Published/Copyright: April 4, 2024

Abstract

Tb3B5O11(OH)2, orthorhombic, Pnna (no. 52), a = 4.4471(1) Å, b = 13.0934(4) Å, c = 13.9055(3) Å, V = 809.68(4) Å3, Z = 4, R gt(F) = 0.0260, wR ref(F 2) = 0.0556, T = 301(1) K.

CCDC no.: 2330264

The molecular structure is shown in the figure. Table 1 contains crystallographic data and Table 2 contains the list of the atoms including atomic coordinates and displacement parameters.

Table 1:

Data collection and handling.

Crystal: Colourless block
Size: 0.02 × 0.02 × 0.02 mm
Wavelength: Mo Kα radiation (0.71073 Å)
μ: 26.0 mm−1
Diffractometer, scan mode: Bruker D8 Quest Photon III C14, φ and ω
θ max, completeness: 35.0°, >99 %
N(hkl)measured, N(hkl)unique, R int: 13,730, 1786, 0.053
Criterion for I obs, N(hkl)gt: I obs > 2σ(I obs), 1169
N(param)refined: 101
Programs: SHELX [1, 2], Olex2 [3], Diamond [4]
Table 2:

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2).

Atom x y z U iso*/U eq
Tb1 0.24656 (7) 0.78626 (2) 0.12047 (2) 0.00698 (7)
Tb2 0.250000 0.500000 0.16760 (2) 0.00493 (7)
B1 0.7597 (16) 0.6513 (4) 0.0458 (3) 0.0055 (8)*
B2 0.7346 (17) 0.6483 (4) 0.2313 (4) 0.0061 (9)
B3 0.750000 0.500000 0.3579 (5) 0.0050 (11)
O1 0.7504 (10) 0.7617 (3) 0.0534 (2) 0.0059 (6)
O2 0.0805 (9) 0.6150 (3) 0.0377 (3) 0.0081 (7)
O3 0.6292 (9) 0.6092 (3) 0.1351 (3) 0.0074 (7)
O4 0.0526 (9) 0.6499 (3) 0.2343 (3) 0.0066 (7)
O5 0.5833 (9) 0.5757 (3) 0.2997 (3) 0.0064 (7)
O6 0.5897 (12) 0.750000 0.250000 0.0058 (9)
O7 0.5222 (10) 0.4472 (3) 0.4179 (3) 0.0101 (8)
H7Aa 0.42 (5) 0.499 (11) 0.424 (17) 0.10 (10)*
H7Ba 0.40 (2) 0.414 (10) 0.448 (9) 0.01 (4)*
  1. aOccupancy: 0.5.

1 Source of material

Tb3B5O11(OH)2 was obtained as a side phase during related experiments, investigating the system Tb4O7–CuO–B2O3. Small colorless crystals were found within the blue main product, which was obtained after the following procedure. Tb4O7 (0.06 mmol, Auer–Remy KG, 99.9 %), CuO (0.11 mmol, ChemPur, 99 %), and B2O3 (0.46 mmol, Alfa Aesar, 99.9 %) were ground in an agate mortar. The mixture was placed in a platinum capsule and centered in an 14/8 assembly of a modified Walker type multianvil apparatus [5], [6], [7]. 11 GPa of pressure were built up within 267 min. Subsequently, the temperature was raised to 700 °C within 10 min and kept constant for 30 min. The temperature was then incrementally lowered to 200 °C within 75 min, where the reaction was quenched. Finally, the pressure was released within 800 min and the sample was recovered from the platinum capsule.

2 Experimental details

Refinements of the crystal structure were carried out in space group Pnna (no. 52). Bond valence sums indicated protonation of the O7 atom. As a direct consequence of the symmetry of the crystal structure, a split-site H7a and H7b with occupation factors 0.5 each is necessary for a reasonable description of the hydrogen atoms. Interatomic OH-distances were fixed at 0.83 Å using DFIX records. Two reflections were omitted from the refinement due to their high deviation.

3 Comment

Terbium is the second lanthanoid displaying a structure type recently reported for Nd3B5O11(OH)2 [8]. The crystal structure consists of a three-dimensional framework of corner-sharing [BO4] tetrahedra forming corrugated 10- and 14-membered rings in the bc-plane, and eight-membered rings in the ac-plane. Different coordination numbers are observed for the two crystallographically different Tb-sites (Tb1: CN = 10; Tb2: CN = 8). The H7-split-site can be interpreted as a hydroxide-group, forming a hydrogen-bond to another O7 atom, acting as the acceptor.


Corresponding author: Hubert Huppertz, Department of General, Inorganic and Theoretical Chemistry, University of Innsbruck, Innrain 80–82, A-6020 Innsbruck, Austria, Europe, E-mail:

Acknowledgments

We thank Assoc.–Prof. Dr. Gunter Heymann and Ass.–Prof. Dr. Klaus Wurst for the recording of and the support with the single-crystal data. Tobias A. Teichtmeister wants to thank the Vice Rector for Research for the grant of a doctoral fellowship at the University of Innsbruck.

  1. Author contribution: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.

  2. Research funding: None declared.

  3. Conflict of interest statement: The authors declare no conflicts of interest regarding this article.

References

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Received: 2024-02-12
Accepted: 2024-03-20
Published Online: 2024-04-04
Published in Print: 2024-06-25

© 2024 the author(s), published by De Gruyter, Berlin/Boston

This work is licensed under the Creative Commons Attribution 4.0 International License.

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