Department of Chemistry, University of Malakand, 18800, Chakdara, Dir (Lower), Khyber, Pakhtunkhwa, Pakistan.
Department of Chemistry, College of Science, University of Bahrain, Main Campus, 32038, Sakhir, Kingdom of Bahrain.
ChemistryOpen. 2024 Oct;13(10):e202400089. doi: 10.1002/open.202400089. Epub 2024 Jul 25.
In this study five different complexes of Cu(II) were synthesized for the purpose of environmentally notorious mercury sensing and preliminary biological screening. Pyridine-2,6-dicarboxylic acid (also known as dipicolinic acid, and abbreviated as HDPA), 3-phenyl pyrazole (3-ppz), 4-iodo-1H-pyrazole (4-ipz), 4-nitropyrazole (4-npz), 4-bromopyrazole (4-bpz), and 4-chloropyrazole (4-cpz) were chosen as potential ligands. The synthesized complexes labelled as 1-5, namely [Cu(DPA)(3-ppz)], [Cu(DPA)(4-ipz)], [Cu(DPA)(4-npz)], [Cu(DPA)(4-bpz)], [Cu(DPA)(4-cpz)], were proposed based on spectroscopic data (FTIR, TGA, and UV-visible spectroscopy). These complexes feature C=O functionalities that are not involved in coordination and may be used for further applications. The isolated complexes were utilized for detecting Hg(II) ions in water samples. Various concentrations of Hg(II) ions were prepared for detection purposes, and changes in absorption concerning complexes 1-5 were determined using UV-Visible spectroscopy. It was found that complexes 3 and 4 exhibit efficient sensing abilities towards Hg(II) ions. The antibacterial activities of complexes 1-5 were assessed against S. typhi and E. coli. The complexes 1 and 3 displayed good antibacterial activities against S. typhi (13.67, and 13.56 mm, respectively) while complexes 1, 2 and 4 were found to be efficient against E. coli (11.6, 12.66, 11.31 mm, respectively). The absorption maxima of 2,2-diphenyl-1-picryhydrazyl (DPPH) at 517 nm, considerably shifted upon addition of complexes 1-5. The results reveal that the complexes possess potential free radical scavenging abilities.
在这项研究中,合成了五个不同的 Cu(II) 配合物,目的是用于环境中有害的汞传感和初步的生物筛选。吡啶-2,6-二羧酸(也称为二吡啶酸,缩写为 HDPA)、3-苯基吡唑(3-ppz)、4-碘-1H-吡唑(4-ipz)、4-硝基吡唑(4-npz)、4-溴吡唑(4-bpz)和 4-氯吡唑(4-cpz)被选为潜在的配体。根据光谱数据(FTIR、TGA 和 UV-可见光谱),合成的配合物标记为 1-5,即[Cu(DPA)(3-ppz)]、[Cu(DPA)(4-ipz)]、[Cu(DPA)(4-npz)]、[Cu(DPA)(4-bpz)]、[Cu(DPA)(4-cpz)]。这些配合物具有不参与配位的 C=O 官能团,可用于进一步的应用。分离出的配合物用于检测水样中的 Hg(II)离子。制备了不同浓度的 Hg(II)离子进行检测,并通过 UV-可见光谱确定了配合物 1-5 的吸收变化。发现配合物 3 和 4 对 Hg(II)离子具有高效的传感能力。评估了配合物 1-5 对 S. typhi 和 E. coli 的抗菌活性。配合物 1 和 3 对 S. typhi 表现出良好的抗菌活性(分别为 13.67 和 13.56 mm),而配合物 1、2 和 4 对 E. coli 表现出高效的抗菌活性(分别为 11.6、12.66 和 11.31 mm)。2,2-二苯基-1-苦基肼(DPPH)在 517 nm 处的吸收最大值,在加入配合物 1-5 后发生了显著位移。结果表明,这些配合物具有潜在的自由基清除能力。