Lawan Salisu Y, Ndahi Naomi P, Galadima Ibrahim B, Wahab Olaide O, Yusuf Tunde L, Coetzee Louis-Charl C, El-Maksoud Mostafa S Abd, Waziri Ibrahim
Department of Pure and Applied Chemistry, University of Maiduguri, Maiduguri, Nigeria.
Department of Crop Protection, Faculty of Agriculture, University of Maiduguri, Maiduguri, Nigeria.
Chem Biodivers. 2025 Jun;22(6):e202403033. doi: 10.1002/cbdv.202403033. Epub 2025 Feb 4.
In this study, a novel fluoro-substituted Schiff base ligand (HL) was synthesized through a condensation reaction between 2-bromo-4-(trifluoromethoxy)aniline and 2-hydroxybenzaldehyde in methanol solvent at room temperature. The ligand was subsequently reacted with copper(II) acetate to produce the corresponding Cu(II) complex (CuL). Both the ligand and its complex underwent characterization using various techniques including nuclear magnetic resonance, ultraviolet-visible, Fourier-transform infrared, thermogravimetric analysis, elemental analysis, and mass spectroscopy. In addition, the solid-state structure of the complex was determined through single crystal X-ray diffraction analysis, confirming the successful isolation of the compounds. Subsequently, the nematicidal activities of the ligand and its complex were assessed through in vitro egg hatching inhibition and mortality rate assays, in comparison to the control, carbofuran (Crf), at concentrations of 50 and 100 µM over a 24-72-h period. The results indicated the ligand's superiority over the complex in both assays at lower concentrations. At a concentration of 50 µM, the ligand HL demonstrated 100% egg-hatching inhibition at 24, 48, and 72 h, whereas the complex CuL showed egg-hatching inhibition rates of 93.86 ± 0.22%, 98.76 ± 0.14%, and 99.33 ± 0.52% at the same time intervals. The control, Crf, exhibited inhibition rates of 56.33 ± 0.33%, 69.94 ± 0.6%, and 67.00 ± 0.34% over the same time period. Similarly, at a concentration of 100 µM, both the ligand and complex demonstrated 100% egg-hatching inhibition at 24, 48, and 72 h, while the control showed egg-hatching rates of 88.16 ± 0.84%, 89.9 ± 0.55%, and 90.8 ± 0.50%. Regarding the mortality rate, at 50 and 100 µM, the ligand HL exhibited a 100% mortality rate within 24 to 72 h, whereas the complex CuL displayed mortality rates of 56.66 ± 0.33%, 63.3 ± 0.23%, and 86.66 ± 0.13% at 24, 48, and 72 h, respectively, with a mortality rate of 100% at 100 µM within the same time intervals. The control, Crf, demonstrated mortality rates of 54%-67% at 50 µM and 62%-78% at 100 µM within 24-72 h. Additionally, the density-functional theory study revealed the electronic properties of the compounds, reinforcing the experimental findings.
在本研究中,通过2-溴-4-(三氟甲氧基)苯胺与2-羟基苯甲醛在甲醇溶剂中于室温下发生缩合反应,合成了一种新型氟取代席夫碱配体(HL)。随后,该配体与醋酸铜(II)反应生成相应的铜(II)配合物(CuL)。使用包括核磁共振、紫外可见、傅里叶变换红外、热重分析、元素分析和质谱等各种技术对配体及其配合物进行了表征。此外,通过单晶X射线衍射分析确定了配合物的固态结构,证实了化合物的成功分离。随后,与对照克百威(Crf)相比,在50和100 μM浓度下,通过体外卵孵化抑制和死亡率测定评估了配体及其配合物的杀线虫活性,测定时间为24至72小时。结果表明,在较低浓度下,配体在两种测定中均优于配合物。在50 μM浓度下,配体HL在24、48和72小时时表现出100%的卵孵化抑制率,而配合物CuL在相同时间间隔内的卵孵化抑制率分别为93.86±0.22%、98.76±0.14%和99.33±0.52%。对照Crf在同一时间段内的抑制率分别为56.33±0.33%、69.94±0.6%和67.00±0.34%。同样,在100 μM浓度下,配体和配合物在24、48和72小时时均表现出100%的卵孵化抑制率,而对照的卵孵化率分别为88.16±0.84%、89.9±0.55%和90.8±0.50%。关于死亡率,在50和100 μM时,配体HL在24至72小时内表现出100%的死亡率,而配合物CuL在24、48和72小时时的死亡率分别为56.66±0.33%、63.3±0.23%和86.66±0.13%,在相同时间间隔内100 μM时死亡率为100%。对照Crf在24至72小时内于50 μM时的死亡率为54%-67%,在100 μM时为62%-78%。此外,密度泛函理论研究揭示了化合物的电子性质,加强了实验结果。