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Antibacterial Effectiveness of Rice Water (Starch)-Capped Silver Nanoparticles Fabricated Rapidly in the Presence of Sunlight

机译:水稻水(淀粉)的抗菌效果 - 在阳光下迅速制造的银纳米粒子

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Green synthesized silver nanoparticles (AgNPs) have enormous applications. Hence, there is an increasing demand to explore diverse bioresources for AgNP fabrication to make the process more cost-effective and rapid as possible. Due to the abundantly present hydroxyl groups of rice starch, it provides ideal sites for metal ion complexation and thereby synthesis of nanoparticles with promising activity. So the study was designed to develop rapid, eco-friendly and cost-effective method for green AgNP synthesis using boiled rice water starch in the presence of sunlight irradiation. The starch-capped nanoparticles (sAgNPs) formed in the study were found to have the surface plasmon absorbance at 439 nm. The study showed optimum yield of sAgNPs when 25% rice starch was treated with aqueous 1 mM AgNO3 for 15 min in the presence of sunlight. Fourier transform infrared spectroscopy analysis provided mechanistic insight into the role of -OH groups of starch in the reduction of AgNO3 to sAgNPs. On further characterization by X-ray diffraction analysis, the sAgNPs were identified to have FCC crystal structure. At the same time, high-resolution transmission electron microscopic analysis showed majority of sAgNPs to have spherical morphology, and dynamic light scattering study revealed the average particle size as 36.3 nm. Further confirmation on presence of AgNPs was carried out by energy-dispersive X-ray spectroscopy. Moreover, the sAgNPs exhibited promising antibacterial activity against foodborne pathogens, Salmonella Typhimurium and Staphylococcus aureus.
机译:绿色合成银纳米颗粒(AgNP)具有巨大的应用。因此,越来越多的需求来探索各种生物资源,用于agnp制造,以使过程更具成本效益和快速。由于大量呈现水稻淀粉的羟基,它为金属离子络合提供了理想的位点,从而为具有有前途的活性的纳米颗粒合成。因此,该研究旨在在阳光照射的情况下使用煮米水淀粉来开发快速,环保合成的快速,环保和成本效益的方法。发现该研究中形成的淀粉封端的纳米颗粒(SAGNP)在439nm处具有表面等离子体吸收。当在阳光下,用1mM AgNO3水溶液处理25%米淀粉时,该研究表明狭窄的凸淀粉的最佳产量。傅里叶变换红外光谱分析提供了对-OH淀粉组在减少AgNO3至SAGNP的作用的作用的机械洞察。在X射线衍射分析的进一步表征上,鉴定了SAGNP以具有FCC晶体结构。同时,高分辨率透射电子显微镜分析显示大多数狭窄具有球形形态,动态光散射研究显示平均粒径为36.3nm。通过能量分散X射线光谱进行agnps的进一步确认。此外,SAGNPS表现出对食物载病原体,沙门氏菌毛孢菌和金黄色葡萄球菌的有前途的抗菌活性。

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