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AOT Micelles/Vesicles for Synthesis of Silver Nanoparticles and Micellar Transitions Affected by Nanoparticles

机译:AOT胶束/囊泡用于合成银纳米颗粒和受纳米颗粒影响的胶束过渡的合成

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摘要

A facile method for the synthesis of silver nanoparticles (Ag NPs) is reported using sodium para-toluene sulphonate (NaPTS) as the reducing agent and AOT micelles and vesicles as capping agents, leading to the development of a system comprising of AOT micelles/vesicles along with Ag NPs. A single component, Na-PTS, has been used to tune the micellar aggregates as well as for the synthesis of Ag NPs. The aggregation behavior of AOT in aqueous Na-PTS has been studied by the method of surface tension and the changes in the morphology of AOT micelles by small angle neutron scattering (SANS) measurements. The synthesis of Ag NPs have also been carried out using common reducing agents such as sodium borohydride and ascorbic acid. SANS measurements have also been performed in the ternary systems of micelles, vesicles and NPs and reveal the formation of fractal structures of the NPs. The ternary systems have been also tested for their antibacterial activity. A very important observation made in the present study is the large decrease in the concentration of salt required to bring about micellar shape transition in the presence of small amounts of NPs.
机译:使用二氧磺酸钠磺酸钠(NAPTs)作为还原剂和aot胶束和囊泡作为封盖剂,用于合成银纳米颗粒(Ag NP)的便利方法,导致了AOT胶束/囊泡的系统的发展与Ag NP一起。单个成分Na-pts已被用来调整胶束聚集体以及Ag NP的合成。通过表面张力的方法和AOT胶束形态的变化,通过小角度中子散射(SANS)测量,已经研究了AOT在Na-PTS中的聚集行为。还使用常见还原剂(例如硼氢化钠和抗坏血酸)进行了Ag NP的合成。 SANS测量也已在胶束,囊泡和NP的三元系统中进行,并揭示了NP的分形结构的形成。三元系统还已经测试了其抗菌活性。在本研究中做出的一个非常重要的观察结果是,在存在少量NP的情况下,在带来胶束形状过渡所需的盐浓度下大大降低。

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