Home Crystal structure of 4-bromo-N′-[3,5-dichloro-2-hydroxyphenyl)methylidene]benzohydrazide methanol solvate, C15H13BrCl2N2O3
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Crystal structure of 4-bromo-N′-[3,5-dichloro-2-hydroxyphenyl)methylidene]benzohydrazide methanol solvate, C15H13BrCl2N2O3

  • Xindi Xu , Meifen Huang , Man Wang , Tianyu Li and Qiong Wu ORCID logo EMAIL logo
Published/Copyright: December 21, 2020

Abstract

C15H13BrCl2N2O3, monoclinic, P21/c (no. 14), a = 7.4135(4) Å, b = 13.3008(8) Å, c = 16.9956(7) Å, β = 104.445(2)°, V = 1622.88(15) Å3, Z = 4, Rgt(F) = 0.0380, wRref(F2) = 0.1031, T = 150(2) K.

CCDC no.: 2039505

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:0.22 × 0.18 × 0.18 mm
Wavelength:Mo Kα radiation (0.71073 Å)
μ:2.88 mm−1
Diffractometer, scan mode:Bruker Apex-II, φ and ω
θmax, completeness:26.4°, >99%
N(hkl)measured, N(hkl)unique, Rint:35,252, 3323, 0.079
Criterion for Iobs, N(hkl)gt:Iobs > 2 σ(Iobs), 2507
N(param)refined:211
Programs:CrysAlisPRO [1], Olex2 [2], SHELX [3], [4]
Table 2:

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

AtomxYzUiso*/Ueq
Br10.77904 (5)0.89354 (4)0.86277 (2)0.06807 (19)
Cl1−0.30365 (12)1.21652 (6)0.15479 (5)0.0425 (2)
Cl2−0.31253 (11)0.82843 (7)0.06522 (5)0.0405 (2)
O1−0.0590 (3)1.14818 (17)0.30602 (13)0.0383 (5)
H10.0130281.1263790.3471850.057*
O20.2746 (3)1.13505 (17)0.52458 (14)0.0412 (5)
N10.2114 (3)0.9750 (2)0.48045 (15)0.0346 (6)
H1A0.2224830.9117080.4910890.042*
N20.1088 (3)1.0089 (2)0.40587 (15)0.0330 (6)
C1−0.0668 (4)0.9713 (2)0.27191 (18)0.0320 (7)
C2−0.1169 (4)1.0723 (2)0.25351 (18)0.0314 (6)
C3−0.2326 (4)1.0941 (2)0.17724 (19)0.0323 (7)
C4−0.2941 (4)1.0196 (3)0.11974 (19)0.0351 (7)
H4−0.3723021.0354180.0693960.042*
C5−0.2375 (4)0.9215 (2)0.13830 (18)0.0335 (7)
C6−0.1270 (4)0.8960 (2)0.21329 (19)0.0337 (7)
H6−0.0923240.8293920.2251240.040*
C70.0437 (4)0.9419 (3)0.35212 (19)0.0349 (7)
H70.0670920.8742310.3643160.042*
C80.2943 (4)1.0443 (3)0.53643 (18)0.0334 (7)
C90.4132 (4)1.0026 (2)0.61413 (18)0.0329 (7)
C100.4721 (4)0.9035 (3)0.6241 (2)0.0375 (7)
H100.4378140.8584940.5810980.045*
C110.5817 (5)0.8715 (3)0.6980 (2)0.0440 (8)
H110.6204260.8048380.7050110.053*
C120.6332 (4)0.9389 (3)0.76121 (19)0.0428 (9)
C130.5810 (4)1.0386 (3)0.7525 (2)0.0419 (8)
H130.6197851.0837170.7951250.050*
C140.4691 (4)1.0698 (3)0.67851 (19)0.0371 (7)
H140.4308491.1364710.6717430.045*
O30.0830 (3)0.78089 (19)0.50528 (15)0.0450 (6)
H3−0.0260180.7905400.5055850.067*
C150.1463 (5)0.6902 (3)0.5470 (2)0.0449 (8)
H15A0.0690000.6355160.5215580.067*
H15B0.1398730.6959640.6025780.067*
H15C0.2727560.6778600.5452260.067*

Source of material

3,5-Dichloro-2-hydroxybenzaldehyde (0.191 g, 1.0 mmol) and 4-bromobenzohydrazide (0.215 g, 1 mmol) were added to a stirring methanol solution (30 mL) and refluxed for 12 h. The mixture was filtered and kept undisturbed at room temperature. The colorless block crystals of the title compound were afforded after one week.

Experimental details

The structure was solved with the Olex2 program [2] as an interface together with the SHELXT and SHELXL programs [3], [4]. All H atoms were placed in geometrically idealized positions and refined using a riding model, with C–H = 0.98 (methylene), O–H = 0.84 (phenolic hydroxyl), 0.95 Å (aryl), and with Uiso(H) = 1.2 Ueq(C) for H atoms at methylene, phenolic hydroxyl and aryl.

Comment

The design and synthesis of supramolecular network of coordination polymers has been one of the academic frontiers in recent years [5], [6]. As a part of our current research interest in exploring the relationship between molecular structure and physicochemical properties of halogenated Schiff-base complexes [7], [8], in this work, we report a new polyhalogenated hydrazone.

X-ray diffraction analysis reveals that the asymmetric unit contains a planar hydrazone molecule and a methanol molecule. The bond lengths and angles are within the normal ranges [9], [10], [11]. As shown in the figure, the five non-hydrogen conjugated atoms [C(=O)N–N=C] constitute the central chromophore. The dihedral angles formed between the central plane and the least-squares planes through the flanking dichloro-hydroxy- and bromo-phenyl rings are 8.951(14)° and 12.881(17)°, respectively. The co-planar geometry between the central chromophore and dichloro-hydroxyphenyl ring generates an intramolecular hydroxy–O–H⋯N hydrogen bond. [O1–H1⋯N2: O1–H1 = 0.84 Å, H1⋯N2 = 1.88 Å, O1⋯N2 = 2.610(4) Å with angle at H1 = 143.6°].

In contrast to reported analogues containing additional water [12], [13], [14], a methanol molecule co-crystallised in the unit cell. As shown in the figure, the oxygen atom (O3) at the methanol molecule accepts a hydrogen bond (H1A–O3) from the hydrazine group [N1–H1A⋯O3: N1–H1A = distance 0.86 Å, H1A⋯O3 = 2.07 Å, N1…O3 = 2.820(4) Å with angle at H1A = 145°].


Corresponding author: Qiong Wu, Department of Chemical Science and Technology, Kunming University, Yunnan, Kunming65200, P. R. China, E-mail:

Funding source: National Natural Science Foundation of China

Award Identifier / Grant number: 31760257

Funding source: Joint Basic Research Program (partial) of Yunnan Local Undergraduate Universities

Award Identifier / Grant number: 2017FH001-002

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

  2. Research funding: Fund for Less Developed Regions of the National Natural Science Foundation of China (No. 31760257); Joint Basic Research Program (partial) of Yunnan Local Undergraduate Universities (2017FH001-002). The reserve academic and technical leaders of Yunnan Province (2019HB098).

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

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Received: 2020-11-12
Accepted: 2020-12-10
Published Online: 2020-12-21
Published in Print: 2021-03-26

© 2020 Xindi Xu 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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