首页> 外文期刊>World Journal of Nano Science and Engineering >Characterization of Polyvinyl Pyrollidone Coated Sodium Borohydride Stabilized Particle Colloidal Silver Fresh None Filtered and Nano Filtered Solution Made up of Magnetic Stirring and Cooling Method
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Characterization of Polyvinyl Pyrollidone Coated Sodium Borohydride Stabilized Particle Colloidal Silver Fresh None Filtered and Nano Filtered Solution Made up of Magnetic Stirring and Cooling Method

机译:磁搅拌冷却法制备聚乙烯吡咯烷酮包覆的硼氢化钠稳定颗粒胶体银的新鲜无过滤和纳滤溶液的表征

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Characterization is absolutely necessary and is a must in order to understand and estimate different silver nanoparticle (nm) size in specific group wise manner which corresponds to group wise in number & sizes, and their importance and effect on biological tissue and organs with agglomeration for nano toxicological studies in environments, the acute toxicity of colloidal silver nano particles (AgNps) were studied in fresh dissected tissues of Swiss Albino mice and their fetuses. In this manuscript, an attempt is made to demonstrate the synthesis and characterization of silver nano particles with a wide range of sizes (from 2.75 nm up to 1908.2 nm in radius) by reducing silver nitrate powder with polyvinyl pyrollidone in aqueous solutions in the presence of a sodium borohydride stabilizer. The resulting particles were found spherical aggregates with a rough surface and poly dispersity index below 18.26% (0.783 PDI). The particle optical, cumulative, diluents and electrical conductivity properties were examined by dynamic light scattering and zeta potential but morphology was evaluated after examination by transmission electron microscopy & image-j. Silver nanoparticles were directly coated with polyvinyl pyrollidone with a sodium borohydride stabilizer. Optical properties on a single-particle level were studied by means of auto correlation function measurements. The effective poly dispersity index of the charged silver nanoparticles was low enough to form a colloidal crystal at low ionic strength. Colloidal form is found more toxic than suspended particles in 1.5 molar sodium chloride solution; this shows increase of silver nanoparticles size due to agglomeration, will reduce the toxicity but increase teratogenicity.
机译:表征是绝对必要的,并且是必须的,以便以特定的分组方式理解和估计不同的银纳米粒子(nm)尺寸,该数量对应于分组的数量和大小,以及它们对于纳米团聚的生物组织和器官的重要性和影响在环境毒理学研究中,对瑞士白化小鼠及其胎儿的新鲜解剖组织进行了胶体银纳米颗粒(AgNps)的急性毒性研究。在本手稿中,尝试通过在水溶液中存在的条件下,通过在水溶液中用聚乙烯吡咯烷酮还原硝酸银粉末来还原具有宽尺寸范围(半径从2.75 nm至最大1908.2 nm)的银纳米颗粒的合成和表征。硼氢化钠稳定剂。发现所得颗粒为球形聚集体,其表面粗糙且多分散指数低于18.26%(> 0.783 PDI)。通过动态光散射和ζ电势检查了粒子的光学,累积,稀释剂和电导率特性,但是在通过透射电子显微镜和image-j检查之后评估了形态。银纳米颗粒直接用具有硼氢化钠稳定剂的聚乙烯吡咯烷酮涂覆。通过自动相关函数测量研究了单粒子水平的光学性质。带电的银纳米颗粒的有效多分散指数足够低以至于在低离子强度下形成胶体晶体。发现胶体形式比1.5摩尔氯化钠溶液中的悬浮颗粒更具毒性。这表明由于团聚而增加了银纳米颗粒的尺寸,会降低毒性但会增加致畸性。

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