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A Simulation Study on the Structure of Bimetallic Nanoparticles Synthesized in Microemulsions

机译:微乳液合成的双金属纳米粒子结构的模拟研究

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Monte Carlo simulations were carried out to study the different structures showed by bimetallic nanoparticles synthesized in microemulsions. It is observed that the difference in reduction rates of both metals is not the only parameter to determine the metals segregation, playing the interdroplet channel size a relevant role. The reduction rates difference determines nanoparticle structure only in two extreme cases: when both reactions take place at the same rate a nanoalloy structure is always obtained; if both reactions have very different rates, the nanoparticle shows a core-shell structure. But in the large interval between both extreme cases, the nanoparticle structure is strongly dependent on the intermicellar exchange, which is mainly determined by the surfactant film flexibility, and on reactants concentration. This result is very promising for the preparation of bimetallic nanoparticles with a given structure.
机译:进行蒙特卡罗模拟以研究在微乳液中合成的双金属纳米粒子显示的不同结构。观察到,两种金属的减少率差异不是确定金属隔离的唯一参数,播放InterDoplet信道大小的相关角色。减少率差异仅在两个极端情况下决定了纳米粒子结构:当两种反应以相同的速率发生时,总是获得纳米拿合金结构;如果两个反应率非常不同,则纳米颗粒表示核心壳结构。但在极端情况之间的较大间隔中,纳米颗粒结构强烈依赖于局长性交换,其主要由表面活性剂膜柔性和反应物浓度决定。该结果非常有希望用给定结构制备双金属纳米颗粒。

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