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首页> 外文期刊>Polymers for advanced technologies >Antimicrobial activity of aniline-formaldehyde resin modified by adding piperazine moiety and its metal polychelates
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Antimicrobial activity of aniline-formaldehyde resin modified by adding piperazine moiety and its metal polychelates

机译:添加哌嗪部分及其金属多螯合物改性的苯胺甲醛树脂的抗菌活性

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摘要

Aniline-formaldehyde resin modified by adding piperazine (AFP) was prepared in alkaline medium, and its metal polychelates have also been prepared with Mn(II), Co(II), Ni(II), Cu(II), and Zn(II) metal ions. The synthesized compounds were characterized by elemental, spectral (UV-Vis, IR, 1{sup left}H-NMR and 13{sup left}C-NMR), thermogravimetric analysis (TGA), and magnetic moment measurements. The percentage of metal in all of the polychelates was found to be consistent with 1:1 (metal/resin) stoichiometry. The thermal behaviors of these coordination polymers were studied by TGA in a nitrogen atmosphere up to 750℃. The TGA results revealed that all the metal polychelates had higher thermal-resistance property compared to the common resin (AFP). The magnetic moment measurements and UV-Vis spectra confirmed the geometry of the central metal ion in all the polychelates. All the synthesized metal polychelates showed excellent antibacterial activities against the selected bacteria. The antibacterial activities were determined using the shaking flask method, where 25 mg/ml concentrations of each compound were tested against 10{sup}5 CFU/ml bacteria solutions. The number of viable bacteria was calculated by using the spread plate method, where 100 ml of the incubated antibacterial agent in bacteria solutions was spread on agar plates, and the number of bacteria was counted after 24 hr of incubation period at 37℃.
机译:在碱性介质中制备了添加哌嗪(AFP)改性的苯胺甲醛树脂,并用Mn(II),Co(II),Ni(II),Cu(II)和Zn(II)制备了其金属多螯合物。 )金属离子。合成的化合物的特征在于元素,光谱(UV-Vis,IR,1 H-NMR和13 C-NMR),热重分析(TGA)和磁矩测量。发现所有聚螯合物中金属的百分比与化学计量为1:1(金属/树脂)一致。通过TGA在高达750℃的氮气氛下研究了这些配位聚合物的热行为。 TGA结果表明,与普通树脂(AFP)相比,所有金属聚螯合物均具有更高的耐热性。磁矩测量和UV-Vis光谱证实了所有多螯合物中中心金属离子的几何形状。所有合成的金属多螯合物对选定的细菌均表现出优异的抗菌活性。使用摇瓶法测定抗菌活性,其中针对10 {sup} 5 CFU / ml细菌溶液测试每种化合物25 mg / ml的浓度。通过铺板法计算活菌数,将100 ml细菌溶液中培养的抗菌剂铺在琼脂平板上,在37℃孵育24小时后计数细菌数。

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