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Vegetable-Oil-Based Hyperbranched Polyester-Styrene Copolymer Containing Silver Nanoparticle as Antimicrobial and Corrosion-Resistant Coating Materials

机译:含有银纳米粒子的植物油基超支化聚酯 - 苯乙烯共聚物作为抗微生物和耐腐蚀涂料

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摘要

Pongamia oil (PO) was converted to Pongamia oil hydroxyl (POH) via epoxidation process. The esterification of POH with linolenic acid was carried out to form hyperbranched polyester (HBPE), and further styrenation was performed at the conjugated double bond in the chain of linolenic acid. After styrenation, silver nanoparticle was added in different weight percentages (0.1–0.4 wt%). The structural elucidation of POH, HBPE, and HBPE-St was carried out by FT-IR, 1H-NMR, and 13C-NMR spectroscopic techniques. Physicochemical and physicomechanical analyses were performed by standard method. Thermal behavior of the HBPE-St was analyzed by using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). The coatings of HBPE-St were prepared on mild steel strips. The anticorrosive behavior of HBPE-St resin-based coatings in acid, saline, and tap water was evaluated, and the molecular weight of HBPE-St was determined by gel permeation chromatography (GPC). The antibacterial activities of the HBPE-St copolymers were tested in vitro against bacteria and fungi by disc diffusion method. The HBPE-St copolymers exhibited good antibacterial activities and can be used as antimicrobial and corrosion-resistant coating materials.
机译:通过环氧化方法将Pongamia油(PO)转化为Pongamia油羟基(POH)。进行用亚麻酸的POH的酯化以形成超支化聚酯(HBPE),在亚麻酸链中的共轭双键处进行进一步的苯化。苯乙烯化后,用不同重量百分比加入银纳米粒子(0.1-0.4wt%)。通过FT-IR,1H-NMR和13C-NMR光谱技术进行POH,HBPE和HBPE-ST的结构阐明。通过标准方法进行物理化学和物理机械分析。通过使用热重分析(TGA)和差示扫描量热法(DSC)来分析HBPE-ST的热行为。在低碳钢条上制备HBPE-ST的涂层。评价HBPE-ST树脂基涂层的防腐行为,评价酸,盐水和自来水中的分子量,通过凝胶渗透色谱法(GPC)测定HBPE-ST。通过盘扩散法在体外测试HBPE-ST共聚物的抗菌活性。 HBPE-ST共聚物表现出良好的抗菌活性,可用作抗微生物和耐腐蚀的涂料。

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