Home A three-dimensional Eu(III) framework in the crystal structure of dimethylaminium poly[dimethylformamide-κ1N)bis(μ4-terephthalato-κ4O:O′:O′′:O′′′)europium(III)] monohydrate, C21H25EuN2O10
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A three-dimensional Eu(III) framework in the crystal structure of dimethylaminium poly[dimethylformamide-κ1N)bis(μ4-terephthalato-κ4O:O′:O′′:O′′′)europium(III)] monohydrate, C21H25EuN2O10

  • Wenqi Song ORCID logo , Yanfang Zhu and Zong-Cheng Miao EMAIL logo
Published/Copyright: May 12, 2021

Abstract

C21H25EuN2O10, monoclinic, P21/n (no. 14), a = 14.1635(8) Å, b = 12.1381(6) Å, c = 14.4528(7) Å, β = 104.361(2)°, V = 2407.1(2) Å3, Z = 4, Rgt(F) = 0.0304, wRref(F2) = 0.0893, T = 296 K.

CCDC no.: 2071913

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:0.12 × 0.10 × 0.10 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:2.66 mm−1
Diffractometer, scan mode:Bruker D8 VENTURE, φ and ω
θmax, completeness:27.5°, >99%
N(hkl)measured, N(hkl)unique, Rint:22250, 5540, 0.049
Criterion for Iobs, N(hkl)gt:Iobs > 2σ(Iobs), 4996
N(param)refined:311
Programs:Bruker [1], Olex2 [2], Shelx [3], [4]
Table 2:

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

AtomxyzUiso*/Ueq
Eu10.58824 (2)0.44661 (2)0.41149 (2)0.01149 (7)
O10.1602 (2)0.0904 (2)0.08142 (17)0.0159 (5)
O20.0518 (2)0.0596 (2)0.16787 (19)0.0202 (6)
O30.3241 (2)0.3784 (2)0.53380 (18)0.0167 (5)
O40.44669 (17)0.3861 (2)0.46597 (17)0.0120 (5)
O50.53850 (19)0.3712 (2)0.23894 (17)0.0137 (5)
O60.6150 (2)0.5315 (2)0.25567 (17)0.0161 (5)
O70.75204 (19)0.3961 (3)0.4107 (2)0.0201 (6)
O80.8456 (2)0.3047 (2)0.3355 (2)0.0224 (6)
O90.5985 (2)0.2368 (2)0.4318 (2)0.0217 (6)
N10.6446 (3)0.1169 (3)0.5548 (3)0.0286 (8)
C10.1301 (3)0.0968 (3)0.1564 (2)0.0120 (7)
C20.1946 (3)0.1571 (3)0.2396 (2)0.0119 (7)
C30.2849 (3)0.1963 (3)0.2341 (2)0.0147 (7)
H30.3078200.1816050.1803760.018*
C40.3415 (3)0.2575 (3)0.3091 (3)0.0150 (7)
H40.4022080.2837820.3054850.018*
C50.3071 (2)0.2794 (3)0.3892 (2)0.0108 (6)
C60.2171 (3)0.2383 (3)0.3947 (3)0.0181 (8)
H60.1943630.2523480.4486400.022*
C70.1613 (3)0.1768 (3)0.3209 (3)0.0193 (8)
H70.1015090.1486830.3253940.023*
C80.3629 (2)0.3515 (3)0.4680 (2)0.0096 (6)
C90.5638 (3)0.4601 (3)0.2042 (2)0.0121 (7)
C100.5303 (3)0.4801 (3)0.0984 (2)0.0119 (7)
C110.4827 (3)0.3982 (3)0.0364 (2)0.0162 (7)
H110.4710490.3298440.0603990.019*
C120.5473 (3)0.5817 (3)0.0609 (3)0.0159 (7)
H120.5792010.6367460.1016190.019*
C130.8330 (3)0.3751 (3)0.3949 (2)0.0118 (6)
C140.9204 (3)0.4381 (3)0.4507 (2)0.0112 (7)
C150.9120 (3)0.5061 (3)0.5257 (3)0.0152 (7)
H150.8532510.5099270.5432280.018*
C161.0090 (3)0.4317 (3)0.4256 (3)0.0155 (7)
H161.0153000.3856010.3760440.019*
C170.5823 (3)0.1845 (3)0.4997 (3)0.0251 (9)
H170.5217810.1935740.5128870.030*
C180.6198 (5)0.0561 (5)0.6329 (5)0.0532 (17)
H18A0.6626780.0778330.6924800.080*
H18B0.626688−0.0215220.6234380.080*
H18C0.5536490.0719260.6339330.080*
C190.7427 (4)0.1039 (5)0.5443 (4)0.0441 (13)
H19A0.7486890.0338740.5155010.066*
H19B0.7877620.1075270.6060120.066*
H19C0.7569130.1617630.5045300.066*
O100.9297 (4)0.3047 (5)0.1765 (4)0.0833 (19)
H10A0.9719870.2621290.1631160.125*
H10B0.9132570.2916790.2277060.125*
N20.6758 (3)0.1940 (3)0.2537 (3)0.0239 (8)
H2A0.6277240.2346950.2651890.029*
H2B0.7316340.2189160.2906450.029*
C200.6621 (4)0.0789 (4)0.2790 (4)0.0355 (11)
H20A0.6003720.0527010.2416690.053*
H20B0.6634820.0742730.3455960.053*
H20C0.7134270.0343880.2661110.053*
C210.6776 (4)0.2069 (5)0.1534 (3)0.0352 (11)
H21A0.6157460.1851620.1131480.053*
H21B0.7280380.1613340.1400470.053*
H21C0.6900790.2825280.1411560.053*

Source of material

The title complex was synthesized from a mixture of Eu(NO3)3·6H2O (0.05 mmol), terephthalic acid (0.025 mmol) and N,N-dimethylformamide (DMF) and H2O mixed solution (4 mL, 3:1) sealed in a Teflon-lined reactor and heated at 115 °C for 72 h. After the reactor was slowly cooled to room temperature, colorless block crystals were obtained and washed with DMF and ethanol successively, and then dried at room temperature.

Experimental details

All the H atoms on the benzene rings were placed geometrically.

Comment

Carboxyl ligands have been widely used to construct metal coordination polymers [57]. 1,4-Dicarboxybenzene and terephthalate are intriguing due to the ability to give rise to coordination polymers (CPs) that can be at the heart of synthesizing metal-organic framework (MOF) structures [8]. As far as we know, reports on Eu-containing CPs and molecular complexes are rare [911]. Recently, our group synthesized a related dinuclear Eu(III) complex [10]. Furthermore, different types of Eu(III) complexes will be formed due to the influence of different ligand coordination methods and synthesis conditions.

As shown in Figure (part a), there is a crystallographically independent Eu3+ named Eu1. The adjacent Eu3+ is bridged by eight oxygen atoms from four terephthalato ligands and one DMF ligand to form a binuclear Eu2 unit, where the distance between Eu3+ and Eu3+ in the binuclear Eu2 unit is about 4.007 Å (see part b of the figure). In this structure, the average Eu–O bond length is about 2.532 Å. In addition, the adjacent dinuclear Eu2 units are connected to each other by bridging terephthalato ligands to expand into a three-dimensional framework structure. The voids of the structure are filled with dimethylaminium cations and water molecules, and the dimethylamine cations play a role in balancing the charge.


Corresponding author: Zong-Cheng Miao, Xi’an Key Laboratory of Advanced Photo-electronics Materials and Energy Conversion Device, School of Science, Xijing University, Xi’an 710123, Shaanxi Province, P. R. China, E-mail:

Funding source: Science Research foundation of Xijing University

Award Identifier / Grant number: XJ18T03

Funding source: Special Scientific Research Project of Shaanxi Education Department

Award Identifier / Grant number: 19JK0904

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

  2. Research funding: This project was funded by Science Research foundation of Xijing University (XJ18T03) and Special Scientific Research Project of Shaanxi Education Department (19JK0904).

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

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Received: 2021-03-21
Accepted: 2021-04-22
Published Online: 2021-05-12
Published in Print: 2021-07-27

© 2021 Wenqi Song et al., published by De Gruyter, Berlin/Boston

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

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