Home The crystal structure of hexalithium decavanadate hexadecahydrate, H32Li6O44V10
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The crystal structure of hexalithium decavanadate hexadecahydrate, H32Li6O44V10

  • Wanxing Liu , Baolei Wang , Yanbing Yang , Dong Liu , Yifan Dai and Meiyu Zhang ORCID logo EMAIL logo
Published/Copyright: February 16, 2023

Abstract

H32Li6O44V10, orthorhombic, Pnnm (no. 58), a = 10.3463(7) Å, b = 17.6637(14) Å, c = 9.2458(8) Å, V = 1689.7(2) Å3, Z = 2, Rgt(F) = 0.0436, wR ref (F2) = 0.1271, T = 293 K.

CCDC no.: 2239304

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: Orange block
Size: 0.15 × 0.14 × 0.13 mm
Wavelength: Mo Kα radiation (0.71073 Å)
μ: 2.78 mm−1
Diffractometer, scan mode: φ and ω
θmax, completeness: 25.0°, >99%
N(hkl)measured, N(hkl)unique, Rint: 8052, 1589, 0.050
Criterion for Iobs, N(hkl)gt: Iobs > 2σ(Iobs), 1252
N(param)refined: 155
Programs: Olex2 [1], SHELX [2]
Table 2:

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

Atom x y z Uiso*/Ueq
Li1 0.4099 (12) 0.2658 (7) 0.000000 0.037 (3)
Li2 0.7201 (11) 0.1950 (6) 0.000000 0.025 (2)
Li3 0.8986(10) 0.0650(7) 0.000000 0.033(3)
V1 0.09854(10) 0.35858(5) 0.000000 0.0150(3)
V2 0.000000 0.500000 0.17766(11) 0.0134(3)
V3 −0.16197(7) 0.35307(4) 0.16471(9) 0.0185(3)
V4 0.26346(10) 0.50555(6) 0.000000 0.0167(3)
O1 0.4991(3) 0.31108(19) 0.1671(4) 0.0279(8)
H1A 0.511849 0.275170 0.226589 0.034*
H1B 0.564129 0.340490 0.169039 0.034*
O2 0.2333(4) 0.3134(2) 0.000000 0.0211(10)
O3 0.7932(3) 0.13414(17) 0.1573(3) 0.0260(8)
H3A 0.736915 0.109549 0.205043 0.031*
H3B 0.842205 0.159159 0.213573 0.031*
O4 0.5319(5) 0.1668(2) 0.000000 0.0283(11)
H4 0.515517 0.140242 −0.074390 0.034*
O5 1.0419(6) 0.1459(3) 0.000000 0.0421(14)
H5 1.060075 0.157933 0.086680 0.051*
O6 1.000000 0.000000 0.1665(5) 0.0303(12)
H6 0.949970 −0.026690 0.218663 0.036*
O7 0.7592(5) −0.0201(3) 0.000000 0.0384(13)
H7 0.714533 −0.030902 −0.074370 0.046*
O8 0.3888(4) 0.4526(2) 0.000000 0.0263(11)
O9 0.1514(3) 0.44351(15) 0.1348(3) 0.0152(6)
O10 0.0706(3) 0.56488(15) 0.2876(3) 0.0187(7)
O11 −0.0694(4) 0.4354(2) 0.000000 0.0153(9)
O12 0.0074(3) 0.31497(16) 0.1451(3) 0.0191(7)
O13 −0.2150(4) 0.3024(2) 0.000000 0.0175(9)
O14 −0.2153(3) 0.30373(17) 0.2951(4) 0.0279(8)
O15 −0.2926(3) 0.42643(15) 0.1462(3) 0.0191(7)

Source of materials

The title compound was obtained from a mixture of V2O5 (0.25 mmol) and LiNO3 (0.25 mmol) in 25 mL of distilled water. The mixture obtained is placed under magnetic stirring and hydrothermal reaction for approximately 2 h. After a week of slow evaporation at room temperature, the orange crystals were obtained in 45% yield.

Experimental details

All hydrogen atomic positions were taken from a difference Fourier map. They were refined with fixed isotropic displacement parameters. All the H atoms were refined as riding on their parent atom.

Comment

Polyoxovanadates (POVs) have attracted much interest in many areas, such as magnetic behavior, biological activity, catalytic properties, energy storage, antiviral and antitumoral agents [3], [4], [5], [6], [7], [8]. Depending on the change of pH in the aqueous medium, vanadium can form different clusters, such as [V5O14]3−, [V10O28]6−, [V12O32]4−, [V13O34]4−, [V18O42]12−, and so on [9], [10], [11], [12]. Nonetheless, there are only a few reports involving decavanadate with Li ions to construct the 3D framework [13], [14], [15].

Single crystal X-ray diffraction analysis reveals the title compound. The formula unit of (Li6(H2O)16)(V10O28) includes one [V10O28]6− polyanion, and Li6(H2O)166+. The decavanadate anion [V10O28]6− consists of an arrangement of ten-edge shared [VO6] distorted octahedra. The V–O bond lengths of polyanion are in the ranges 1.598(5)–2.313(3) Å, which are in agreement with the reported results [16]. In the title compound, the Li cations can be divided into two groups, in which Li cations are all coordinated with three oxygen atoms of water molecules , and one Li cation is six-coordinated with six water molecules in a distorted octahedral arrangement (see the figure). The distances of Li–O range from 1.960(8) to 2.189(9) Å [17]. In addition, the supramolecular 3D structure of the title compound is stabilized by intermolecular strong O–H⋯O hydrogen-bonds between adjacent [V10O28]6− polyanions.


Corresponding author: Meiyu Zhang, School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252000, Shandong, China, E-mail:

Funding source: Liaocheng University

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

  2. Research funding: Entrepreneurship Training Program for College Students of Liaocheng University (CXCY2022039).

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

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Received: 2022-11-13
Accepted: 2023-02-01
Published Online: 2023-02-16
Published in Print: 2023-04-25

© 2022 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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