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首页> 外文期刊>Chemical Science International Journal >Green Synthesis and Characterization of SilverNanoparticles Using Mimusops elengi FlowerExtract and Its Synergistic Antimicrobial Potential
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Green Synthesis and Characterization of SilverNanoparticles Using Mimusops elengi FlowerExtract and Its Synergistic Antimicrobial Potential

机译:芒草花卉提取物的绿色合成和表征纳米银及其协同抗菌潜力

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Aims: To express environment friendly method for the green synthesis of silver nanoparticles from Mimusops elengi flower extract and incorporation of AgNPs with selected antibiotics at distinct dose.Study Design: Samples of Mimusops elengi flowers were collected in NMSSVN College garden. Silver Nitrate purchased from TCI Chemicals Chennai, Tamilnadu, INDIA. The procedure used is simple and sustainable making it suitable for economic production of SNPs.Place and Duration of Study: PG and Research Department of Chemistry, NMSSVN College, Madurai, Tamilnadu, INDIA, between December 2014 and September 2015.Methodology: About 20 gm of finely cut flowers were kept in a beaker containing 200 mL double distilled water and boiled for 30 minutes. The extract was cooled down and filtrate was stored in refrigerator until the synthesis of silver nanoparticles was carried out. About 6-8 mL of the Mimusops elengi flower extract was added to 40 ml of 1 mM AgNO_(3) solution for the reduction of Ag~(+) ions. The reduction of the Ag~(+) ions by Mimusops elengi flower extract in the solutions was monitored by UV-Vis spectrum further characterized by XRD, SEM-Eds and FTIR.Results: This method shows that Aqueous Ag~(+) ions were reduced to AgNPs when added to the Mimusops elengi flower extract, this indicated by the color change from whitish yellow to brown and the control showed no color change. UV-Visible spectrophotometer showed absorbance peak in range of 431.96 nm. X-ray diffraction was employed to ascertain the crystalline nature and purity of the silver nanoparticles which implied the presence of (111) (200) and (220) lattice planes of the face centered cubic (fcc) structure of metallic silver.Conclusion: AgNPs synthesis is a simple, clean which involves efficient method to reduce metal ions. Mimusops elengi flower extract was found to be an effective biological tool for the biosynthesis of AgNPs. The results confirmed that SNPs can act as a powerful antibacterial agent against various pathogenic bacteria.
机译:目的:表达一种环境友好的方法,用于从Mimusops elengi花提取物中绿色合成银纳米粒子,并以不同的剂量将AgNPs与选定的抗生素掺入。研究设计:在NMSSVN大学花园中收集Mimusops elengi花的样品。硝酸银购自印度Tamilnadu的TCI Chemicals Chennai。研究过程简单且可持续,使其适合于SNP的经济生产研究地点和持续时间:印度泰米尔纳德邦马杜赖NMSSVN学院PG和化学研究部门,研究时间:2014年12月至2015年9月。方法:约20克将细切的花朵放在装有200 mL双蒸馏水的烧杯中,煮沸30分钟。将提取物冷却,并将滤液储存在冰箱中,直到合成银纳米颗粒为止。将约6-8 mL的Mimusops elengi花提取物添加到40 ml的1 mM AgNO_(3)溶液中,以还原Ag〜(+)离子。用XRD,SEM-Eds和FTIR对UV-Vis光谱进行了表征,结果表明,该溶液对银〜(+)离子的还原作用较快。当添加到Mimusops elengi花提取物中时,其还原为AgNPs,这由颜色的变化显示,从发白的黄色变为棕色,而对照组则没有显示颜色变化。紫外可见分光光度计显示在431.96 nm范围内的吸收峰。 X射线衍射用于确定银纳米颗粒的晶体性质和纯度,这暗示着金属银的面心立方(fcc)结构的(111)(200)和(220)晶格的存在。合成是一种简单,清洁的方法,其中涉及有效的还原金属离子的方法。发现mus草花提取物是用于AgNPs生物合成的有效生物工具。结果证实,SNPs可以作为针对各种病原菌的强大抗菌剂。

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