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Nanostructural Features of Silver Nanoparticles Powder Synthesized through Concurrent Formation of the Nanosized Particles of Both Starch and Silver

机译:通过同时形成淀粉和银的纳米粒子合成的银纳米粒子粉末的纳米结构特征

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摘要

Green innovative strategy was developed to accomplish silver nanoparticles formation of starch-silver nanoparticles (St-AgNPs) in the powder form. Thus, St-AgNPs were synthesized through concurrent formation of the nanosized particles of both starch and silver. The alkali dissolved starch acts as reducing agent for silver ions and as stabilizing agent for the formed AgNPs. The chemical reduction process occurred in water bath under high-speed homogenizer. After completion of the reaction, the colloidal solution of AgNPs coated with alkali dissolved starch was cooled and precipitated using ethanol. The powder precipitate was collected by centrifugation, then washed, and dried; St-AgNPs powder was characterized using state-of-the-art facilities including UV-vis spectroscopy, Transmission Electron Microscopy (TEM), particle size analyzer (PS), Polydispersity index (PdI), Zeta potential (ZP), XRD, FT-IR, EDX, and TGA. TEM and XRD indicate that the average size of pure AgNPs does not exceed 20 nm with spherical shape and high concentration of AgNPs (30000 ppm). The results obtained from TGA indicates that the higher thermal stability of starch coated AgNPS than that of starch nanoparticles alone. In addition to the data obtained from EDX which reveals the presence of AgNPs and the data obtained from particle size analyzer and zeta potential determination indicate that the good uniformity and the highly stability of St-AgNPs).
机译:开发了绿色创新策略来完成粉末形式的淀粉-银纳米颗粒(St-AgNPs)的银纳米颗粒形成。因此,通过同时形成淀粉和银的纳米级颗粒来合成St-AgNP。碱溶解的淀粉充当银离子的还原剂和形成的AgNP的稳定剂。化学还原过程发生在高速均质机的水浴中。反应完成后,将涂有碱溶性淀粉的AgNPs的胶体溶液冷却并用乙醇沉淀。离心收集粉末沉淀物,然后洗涤并干燥。使用先进的设备对St-AgNPs粉末进行表征,包括紫外可见光谱,透射电子显微镜(TEM),粒度分析仪(PS),多分散指数(PdI),Zeta电位(ZP),XRD,FT -IR,EDX和TGA。 TEM和XRD表明,球形和高浓度AgNPs(30000 ppm)时,纯AgNPs的平均大小不超过20 nm。从TGA获得的结果表明,淀粉包覆的AgNPS的热稳定性高于单独的淀粉纳米颗粒。除了从EDX获得的数据表明存在AgNPs之外,从粒度分析仪和zeta电势测定获得的数据还表明St-AgNPs具有良好的均一性和高度稳定性。

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  • 来源
    《Journal of nanotechnology》 |2013年第2013期|14.1-14.10|共10页
  • 作者单位

    Textile Research Division, National Research Centre, Dokki, P.O. Box 12622, Giza 12522, Egypt;

    Textile Research Division, National Research Centre, Dokki, P.O. Box 12622, Giza 12522, Egypt;

    Textile Research Division, National Research Centre, Dokki, P.O. Box 12622, Giza 12522, Egypt;

    Textile Research Division, National Research Centre, Dokki, P.O. Box 12622, Giza 12522, Egypt;

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