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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Synthesis and characterization of novel poly(3-aminophenyl boronic acid-co-vinyl alcohol) nanocomposite polymer stabilized silver nanoparticles with antibacterial and antioxidant applications
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Synthesis and characterization of novel poly(3-aminophenyl boronic acid-co-vinyl alcohol) nanocomposite polymer stabilized silver nanoparticles with antibacterial and antioxidant applications

机译:具有抗菌和抗氧化应用的新型聚(3-氨基苯基硼酸 - 共乙烯醇)纳米复合材料稳定银纳米粒子的合成与表征

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In this work, the synthesis method and applications of nanocomposite polymer stabilized silver nanoparticles (AgNPs) are reported. 3-Aminophenyl boronic acid (3APBA) was used as a reductant of silver nitrate which acted as an oxidant for the polymerization of 3APBA through in situ chemical oxidative polymerization to poly(3aminophenyl boronic acid) or PABA. The formation of PABA in the reaction mixture led to particle agglomeration owing to PABA poor solubility. However, in the presence of hydrophilic poly(vinyl alcohol) (PVA), PABA binds to the free hydroxyl group of PVA to form a composite polymer (PABA-PVA), which perfectly stabilized the formed AgNPs. Succinctly, PVA acted as a solubilizer and stabilizer for (PABA-PVA)AgNPs synthesis. Synthesis was optimized and sharp absorption peaks at 290 nm and 426 nm were observed, attributing to the pi-pi* transition of the benzenoid ring of PABA and the characteristic absorption spectrum of AgNPs, respectively. (PABA-PVA)AgNPs was characterized using UV-vis, TEM, FESEM, EDX, XRD, FTIR, TGA/DTG, DLS and zeta potential analysis. In addition, the antibacterial, antioxidant and metal chelating capacities of (PABA-PVA)AgNPs were evaluated. The (PABA-PVA)AgNPs exhibited significant antibacterial activity against Escherichia coli and Listeria monocytogenes, and good antioxidant and metal chelating properties of (PABA-PVA)AgNPs, thus validating its attractive biological applications.
机译:在这项工作中,报道了纳米复合材料稳定的银纳米颗粒(AgNP)的合成方法和应用。 3-氨基苯基硼酸(3apBa)用作硝酸银银硝酸盐的还原剂,其作为氧化剂,其通过原位化学氧化聚合对聚(3氨基苯基硼酸)或PABA来聚合3apBa。由于PABA溶解度不良,反应混合物中PABA的形成导致颗粒附聚。然而,在亲水性聚(乙烯醇)(PVA)的存在下,PABA与PVA的游离羟基结合以形成复合聚合物(PABA-PVA),其完全稳定形成的AgNP。简洁地,PVA用作(PABA-PVA)AgNPS合成的溶解剂和稳定剂。合成经过优化,观察到290nm和426nm处的清晰吸收峰,归因于paba的苯突环的pi-pi *转变和agnps的特征吸收光谱。 (PABA-PVA)AGNPS使用UV-VI,TEM,FESEM,EDX,XRD,FTIR,TGA / DTG,DLS和Zeta电位分析表征。此外,评价(PABA-PVA)AgNP的抗菌,抗氧化剂和金属螯合能力。 (PABA-PVA)AGNPS对大肠杆菌和李斯特菌单核细胞生成的显着抗菌活性,以及​​(PABA-PVA)AGNP的良好抗氧化剂和金属螯合性能,从而验证其具有吸引力的生物学应用。

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