Synthesis, crystal structures and urease inhibition of copper(II), manganese(III) and nickel(II) complexes derived from 2-bromo- N′ -(2-hydroxy-4-methoxybenzylidene) benzohydrazide

Hydrazones have interesting biological activities. In this work, three new copper(II), manganese(III) and nickel(II) complexes, [Cu2(HL)2(OH2)2](NO3)2·2H2O (1), [MnLL′(CH3OH)] (2) and [Ni2(HL)2(OH2)2(DMF)2](ClO4)2 (3), where L is the dianionic form of 2-bromo-N′-(2-hydroxy-4-methoxybenzylidene)benzohydrazide (H2L), HL is the deprotonated form of H2L, and L′ is the deprotonated form of 4-methoxysalicylaldehyde, were prepared and characterized by physico-chemical methods. Molecular structures of the complexes have been determined by single crystal X-ray crystallography. In complexes 1 and 3, the hydrazone ligands coordinated to the metal atoms through phenolate oxygen, imino nitrogen and carbonyl oxygen atoms. In complex 2, the hydrazone ligands coordinated to the manganese atom through phenolate oxygen, imino nitrogen and enolate oxygen atoms. The Cu atoms in complex 1 are in square pyramidal coordination, and the Mn and Ni atoms in complexes 2 and 3 are in octahedral coordination. Crystals of the complexes are stabilized by hydrogen bonds. The complexes were tested for their urease inhibitory activities. Complex 1 has the most activity on Jack bean urease (IC50 = 1.4 ± 0.2 μmol L−1).

Authors

Institutions

Publication Details

Journal
Journal of Coordination Chemistry
Published
2026-08-27
DOI
https://doi.org/10.1080/00958972.2026.2723320
Primary Topic
Microbial Applications in Construction Materials
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Synthesis, crystal structures and urease inhibition of copper(II), manganese(III) and nickel(II) complexes derived from 2-bromo- N′ -(2-hydroxy-4-methoxybenzylidene) benzohydrazide

Zhonglu You, Yaoyao Cao, Zhengwei Wu, Dahua Shi et al.
Journal of Coordination Chemistry
Microbial Applications in Construction Materials
article

Synthesis, crystal structures and urease inhibition of copper(II), manganese(III) and nickel(II) complexes derived from 2-bromo- N′ -(2-hydroxy-4-methoxybenzylidene) benzohydrazide

Zhonglu You, Yaoyao Cao, Zhengwei Wu, Dahua Shi, Haodong Zhang, Jiayan Dai
article en

Abstract

Hydrazones have interesting biological activities. In this work, three new copper(II), manganese(III) and nickel(II) complexes, [Cu2(HL)2(OH2)2](NO3)2·2H2O (1), [MnLL′(CH3OH)] (2) and [Ni2(HL)2(OH2)2(DMF)2](ClO4)2 (3), where L is the dianionic form of 2-bromo-N′-(2-hydroxy-4-methoxybenzylidene)benzohydrazide (H2L), HL is the deprotonated form of H2L, and L′ is the deprotonated form of 4-methoxysalicylaldehyde, were prepared and characterized by physico-chemical methods. Molecular structures of the complexes have been determined by single crystal X-ray crystallography. In complexes 1 and 3, the hydrazone ligands coordinated to the metal atoms through phenolate oxygen, imino nitrogen and carbonyl oxygen atoms. In complex 2, the hydrazone ligands coordinated to the manganese atom through phenolate oxygen, imino nitrogen and enolate oxygen atoms. The Cu atoms in complex 1 are in square pyramidal coordination, and the Mn and Ni atoms in complexes 2 and 3 are in octahedral coordination. Crystals of the complexes are stabilized by hydrogen bonds. The complexes were tested for their urease inhibitory activities. Complex 1 has the most activity on Jack bean urease (IC50 = 1.4 ± 0.2 μmol L−1).

Journal of Coordination Chemistry
Anhui Agricultural University (CN), Sichuan University of Arts and Science (CN), Shanghai Ocean University (CN)
Clean water and sanitation
Openalex Percentile: Top 17%
Microbial Applications in Construction Materials
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.