Home Physical Sciences Crystal structure of triaqua-[5-bromo-2-(carboxylatomethoxy)benzoate-κ3 O,O′,O″]nickel(II), C9H11BrNiO8
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Crystal structure of triaqua-[5-bromo-2-(carboxylatomethoxy)benzoate-κ3 O,O′,O″]nickel(II), C9H11BrNiO8

  • Pan-Lei Xiao , Xin-Ting Xiong , Xiao-Hui Ou-Yang , Yue Ren and Xu-Liang Nie ORCID logo EMAIL logo
Published/Copyright: January 24, 2023

Abstract

C9H11BrNiO8, monoclinic, P21/c (no. 14), a = 8.5077(16) Å, b = 6.7688(13) Å, c = 22.459(4) Å, β = 98.188(2)°, V = 1280.2(4) Å3, Z = 4, Rgt(F) = 0.0256, wRref(F2) = 0.0585, T = 296(2) K.

CCDC no.: 830083

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: Colorless block
Size: 0.45 × 0.17 × 0.16 mm
Wavelength: Mo Kα radiation (0.71073 Å)
μ: 4.67 mm−1
Diffractometer, scan mode: Bruker APEX-II, φ and ω
θmax, completeness: 27.5°, 99%
N(hkl)measured, N(hkl)unique, Rint: 10,749, 2910, 0.021
Criterion for Iobs, N(hkl)gt: Iobs > 2 σ(Iobs), 2510
N(param)refined: 178
Programs: Bruker [1], SHELX [2, 3], Diamond [4]
Table 2:

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

Atom x y z Uiso*/Ueq
Ni1 0.23071 (3) 0.18457 (4) 0.20361 (2) 0.02340 (8)
O1 0.4458 (2) −0.3125 (2) 0.14519 (7) 0.0360 (4)
O2 0.34418 (19) −0.0634 (2) 0.18926 (7) 0.0309 (4)
O3 0.19227 (19) 0.2247 (2) 0.10964 (6) 0.0272 (3)
O4 −0.0121 (2) 0.6667 (2) 0.13655 (7) 0.0350 (4)
O5 0.10979 (19) 0.4418 (2) 0.19922 (7) 0.0309 (4)
O6 0.43991 (19) 0.3392 (2) 0.20871 (7) 0.0329 (4)
H1W 0.4314 0.4449 0.1906 0.043 (8)*
H2W 0.5043 0.3469 0.2398 0.059 (10)*
O7 0.01744 (19) 0.0334 (2) 0.19539 (7) 0.0333 (4)
H3W −0.0185 0.0226 0.2279 0.075 (12)*
H4W 0.0322 −0.0759 0.1812 0.070 (11)*
O8 0.2581 (2) 0.1616 (3) 0.29409 (7) 0.0398 (4)
H5W 0.1857 0.1585 0.3147 0.055 (9)*
H6W 0.3461 0.1738 0.3149 0.060 (10)*
C1 0.3065 (3) −0.1419 (3) −0.02660 (10) 0.0313 (5)
C2 0.2248 (3) 0.0298 (4) −0.04128 (10) 0.0387 (6)
H2 0.1950 0.0642 −0.0814 0.046*
C3 0.1868 (3) 0.1518 (4) 0.00422 (10) 0.0348 (5)
H3 0.1322 0.2690 −0.0056 0.042*
C4 0.2294 (2) 0.1013 (3) 0.06435 (9) 0.0238 (4)
C5 0.3130 (2) −0.0749 (3) 0.07991 (9) 0.0234 (4)
C6 0.3509 (3) −0.1936 (3) 0.03296 (10) 0.0281 (5)
H6 0.4072 −0.3100 0.0420 0.034*
C7 0.3705 (3) −0.1528 (3) 0.14257 (10) 0.0247 (4)
C8 0.1015 (3) 0.4001 (3) 0.09264 (10) 0.0276 (5)
H8A 0.0031 0.3640 0.0677 0.033*
H8B 0.1609 0.4853 0.0692 0.033*
C9 0.0643 (3) 0.5110 (3) 0.14764 (10) 0.0261 (4)
Br1 0.36257 (4) −0.30809 (5) −0.08819 (2) 0.05263 (10)

Source of materials

The title complex was synthesized by a hydrothermal method under autogenous pressure. A mixture of NiCl2 (0.0130 g, 0.1 mmol), 5-bromo-2-(carboxymethoxy)benzoic acid (0.0275 g, 0.2 mmol), NaOH (0.4 mL, 0.1 mol/L) and distilled water (15 mL) was sealed in a teflon-lined stainless reactor (25 mL) and heated at 120 °C for 72 h, and then cooled to room temperature. The green block crystals were filtered and washed with water and ethanol.

Experimental details

All H atoms were included in calculated positions and refined as riding atoms.

Comment

Complexes of o-carboxylphenoxyacetate acid (H2OCPA) have attracted much attention [5], [6], [7], [8]. Kennard et al. have reported two corresponding copper complexes firstly [9]. Feng et al. have reported the structures and magnetic properties of four Mn(II) and Cu(II) complexes based on 2-carboxyphenoxyacetate [10]. Li et al. have reported the structures and magnetic properties of two nickel(II) coordination polymers constructed with 2-carboxyphenoxyacetate [11]. Many complexes with 2-carboxyphenoxyacetate were found displaying diverse structure types. Up to now, the syntheses of metal-organic complexes assemblies employing organic ligands with Br group has not been reported. In this paper, we report the synthesis and structure of the title complex.

In the crystal structure of the title compound, each six-coordinated Ni(II) adopts a distorted octahedral geometry, where the basal plane is occupied by three oxygen atoms [O(2), O(3) and O(5)] from three equivalent 5-bromo-2-carboxyphenoxyacetate ligands and one oxygen atom from coordinated water [O(8)]; the axial positions are occupied by two oxygen atoms from coordinated water [O(6), O(7)]. The Ni–O bond distances range from 1.9852(15) to 2.0181(16) Å. The O–Ni–O bond angles vary from 80.01(6) to 177.89(7)°, which are similar to those in Ni(II) complexes with the 2-carboxyphenoxyacetate ligand [11]. Intermolecular O–H⋯O hydrogen bonds between the three coordinated water O atoms [O(6), O(7) and O(8)] and four carboxy O atoms [O(1), O(2), O(4) and O(5)] link the complexes into a hydrogen bonded network.


Corresponding author: Xu-Liang Nie, Key Laboratory of Chemical Utilization of Plant Resources of Nanchang/College of Chemistry and Material Science, Jiangxi Agricultural University, Nanchang 330045, People’s Republic of China, E-mail:

Acknowledgments

X-ray data were collected at Instrumental Analysis Center Nanchang Hangkong University, Nanchang, 330063, People’s Republic of China.

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

  2. Research funding: This research was supported by the Key Research Foundation of Educational Department of Jiangxi Province of China(GJJ200404), the Research Foundation of Jiangxi Medical Products Administration(2022JS34).

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

References

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Received: 2022-12-12
Accepted: 2023-01-10
Published Online: 2023-01-24
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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