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Water based simple synthesis of re-dispersible silver nano-particles

机译:水基简单合成可再分散银纳米粒子

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Successful experiments with tri-sodium citrate as initial surfactant-cum-reducing agent followed by a secondary reducing agent i.e. sodium formaldehyde sulphoxylate (SFS) to silver nitrate were performed which established a clear large-scale method for the preparation of silver nano-powder of particle size of less than 50 nm. The citrate ions also create hydrophilic capping to in-situ generated zero-valent silver, thus leading to surfactant capped particles. Partial re-dispersion of such nano-powder in aqueous medium leads to colloidal silver which can be loaded in water friendly polymers such as polyvinyl alcohol (PVA) and polyvinyl pyrrolidone (PVP). UV-Visible absorption band at about 275 and 400 nm of colloidal silver in water can be retained even after loading in polymer. Transmission electron microscopy (TEM) of the colloidal solution showed a particle of the size < 30 nm. Particle size distribution by dynamic light scattering technique (DLS) showed that the particles are in the range of 10-40 nm. The elemental composition was studied by energy dispersive analysis of X-rays (EDS).
机译:成功进行了以柠檬酸三钠为初始表面活性剂兼还原剂,然后使用次要还原剂,即甲醛次硫酸氢钠(SFS)制备硝酸银的成功实验,为建立纳米银粉的清晰清晰的大规模制备方法奠定了基础。粒径小于50 nm。柠檬酸根离子还对原位产生的零价银产生亲水性封端,从而导致表面活性剂封端的颗粒。这种纳米粉末在水介质中的部分再分散导致胶体银,其可以负载在水友好的聚合物中,例如聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP)。即使负载在聚合物中,也可以在水中约275和400 nm的胶态银保留紫外可见吸收带。胶体溶液的透射电子显微镜(TEM)显示尺寸小于30nm的颗粒。通过动态光散射技术(DLS)的粒度分布表明该颗粒在10-40nm的范围内。通过X射线(EDS)的能量色散分析研究了元素组成。

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