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Preparation of AgBr Nanoparticles in Microemulsions Via Reaction of AgNO3 with CTAB Counterion

机译:AgNO3 与CTAB抗衡离子反应制备微乳状AgBr纳米颗粒

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Nanoparticles of AgBr were prepared by precipitating AgBr in the water pools of microemulsions consisting of CTAB, n-butanol, isooctane and water. An aqueous solution of AgNO3 added to the microemulsion was the source of Ag+ ions. The formation of AgBr nanoparticles in microemulsions through direct reaction with the surfactant counterion is a novel approach aimed at decreasing the role of intermicellar nucleation on nanoparticle formation for rapid reactions. The availability of the surfactant counterion in every reverse micelle and the rapidity of the reaction with the counterion trigger nucleation within individual reverse micelles. The effect of the following variables on the particle size and size distribution was investigated: the surfactant and cosurfactant concentrations, moles of AgNO3 added, and water to surfactant mole ratio, R. High concentration of the surfactant or cosurfactant, or high water content of the microemulsion favored intermicellar nucleation and resulted in the formation of large particles with broad size distribution, while high amounts of AgNO3 favored nucleation within individual micelles and resulted in small nanoparticles with narrow size distribution. A blue shift in the UV absorption threshold corresponding to a decrease in the particle size was generally observed. Notably, the variation of the absorption peak size with the nanoparticle size was opposite to those reported by us in previous studies using different surfactants.
机译:通过在由CTAB,正丁醇,异辛烷和水组成的微乳液的水池中沉淀AgBr,可以制备AgBr纳米颗粒。添加到微乳液中的AgNO3 水溶液是Ag + 离子的来源。通过与表面活性剂抗衡离子的直接反应在微乳液中形成AgBr纳米颗粒是一种新颖的方法,旨在减少胶束间成核作用对快速反应的纳米颗粒形成的作用。每个反胶束中表面活性剂抗衡离子的可用性以及与反荷离子的反应速度都会触发单个反胶束中的成核作用。研究了以下变量对粒度和粒度分布的影响:表面活性剂和辅助表面活性剂的浓度,添加的AgNO3的摩尔数以及水与表面活性剂的摩尔比R。高浓度的表面活性剂或辅助表面活性剂或高浓度微乳液中的水含量有利于胶束间的成核,并导致形成具有宽尺寸分布的大颗粒,而大量的AgNO3 有利于单个胶束内的成核,并导致具有窄尺寸分布的小纳米颗粒。通常观察到紫外线吸收阈值发生蓝移,这对应于粒径的减小。值得注意的是,吸收峰尺寸随纳米颗粒尺寸的变化与我们先前在使用不同表面活性剂的研究中报道的相反。

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