Henan Key Laboratory of Polyoxometalate Chemistry, College of Chemistry and Chemical Engineering, Henan University, Kaifeng 475004, China.
Int J Mol Sci. 2022 Aug 25;23(17):9651. doi: 10.3390/ijms23179651.
In view of the water pollution issues caused by pathogenic microorganisms and harmful organic contaminants, nontoxic, environmentally friendly, and efficient antimicrobial agents are urgently required. Herein, a nickel-based Keggin polyoxomolybdate [Ni(L)(HL)]H[PMoO] 4HO (, HL = 2-acetylpyrazine thiosemicarbazone) was prepared via a facile hydrothermal method and successfully characterized. Compound exhibited high stability in a wide range of pH values from 4 to 10. demonstrated significant antibacterial activity, with minimum inhibitory concentration (MIC) values in the range of 0.0019-0.2400 µg/mL against four types of bacteria, including (), (), (), and (). Further time-kill studies indicated that killed almost all (99.9%) of and Meanwhile, the possible antibacterial mechanism was explored, and the results indicate that the antibacterial properties of originate from the synergistic effect between [Ni(L)(HL)] and [PMoO]. In addition, presented effective adsorption of basic fuchsin (BF) dyes. The kinetic data fitted a pseudo-second-order kinetic model well, and the maximum adsorption efficiency for the BF dyes (29.81 mg/g) was determined by the data fit of the Freundlich isotherm model. The results show that BF adsorption was dominated by both chemical adsorption and multilayer adsorption. This work provides evidence that has potential to effectively remove dyes and pathogenic bacteria from wastewater.
鉴于致病微生物和有害有机污染物引起的水污染问题,急需无毒、环保、高效的抗菌剂。在此,通过简便的水热法制备了一种镍基 Keggin 多钼酸盐[Ni(L)(HL)]H[PMoO]4HO (,HL = 2-乙酰基吡嗪硫代缩氨基脲),并成功进行了表征。化合物在 pH 值为 4 到 10 的较宽范围内表现出高稳定性。表现出显著的抗菌活性,对四种类型的细菌的最小抑菌浓度 (MIC) 值在 0.0019-0.2400 µg/mL 范围内,包括()、()、()和()。进一步的时程杀伤研究表明,几乎杀死了所有的()和()。同时,探索了可能的抗菌机制,结果表明的抗菌性能源于[Ni(L)(HL)]和[PMoO]之间的协同作用。此外,还对碱性品红 (BF) 染料表现出有效的吸附作用。动力学数据很好地拟合了伪二阶动力学模型,BF 染料的最大吸附效率 (29.81 mg/g) 通过 Freundlich 等温线模型的数据拟合确定。结果表明,BF 吸附主要由化学吸附和多层吸附控制。这项工作证明了具有从废水中有效去除染料和致病菌的潜力。