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首页> 外文期刊>Journal of Colloid and Interface Science >Modelling of nano-alloying and structural evolution of bimetallic core-shell nanoparticles obtained via the microemulsion route
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Modelling of nano-alloying and structural evolution of bimetallic core-shell nanoparticles obtained via the microemulsion route

机译:通过微乳化途径获得的双金属核壳纳米粒子的纳米合金化模型和结构演化

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A Monte Carlo model has been developed to describe the formation of bimetallic nanoparticles via the microemulsion route. The motivation stems from the need to understand the kinetics of nanoparticle formation in microemulsion droplets in order to determine the best experimental conditions to synthesize a nanoparticle with a given structure. We focus our study on the influence of the homogeneous and heterogeneous critical nucleus sizes of both metals on nanoparticle structure, as well as the role played by the surfactant film flexibility. The study reveals that the final structure is sensitive to changes in the critical nucleus numbers, because these parameters determine the rate of nucleation. An increase in the difference between nucleation rates of both metals gives rise to a better segregation of metals in the final nanoparticle. Likewise, as long as the formation of heterogeneous seeds is faster, the degree of alloying is greater. Finally, a fast material intermicellar exchange leads to a better mixture of metals, so the influence of the critical nucleus sizes on nanoparticle structure becomes less pronounced as the flexibility of surfactant film is increased.
机译:已经开发了蒙特卡洛模型来描述通过微乳液途径形成双金属纳米颗粒。动机源于需要了解微乳液液滴中纳米颗粒形成的动力学,以便确定合成具有给定结构的纳米颗粒的最佳实验条件。我们将研究重点放在两种金属的均质和异质临界核尺寸对纳米颗粒结构的影响,以及表面活性剂薄膜柔韧性起的作用。研究表明,最终结构对关键核数的变化敏感,因为这些参数决定了成核速率。两种金属的成核速率之间差异的增加导致最终纳米颗粒中更好的金属偏析。同样,只要异质种子的形成更快,则合金化程度就更大。最后,材料之间的快速交换导致金属更好地混合,因此,随着表面活性剂膜柔性的增加,临界核尺寸对纳米颗粒结构的影响变得不那么明显。

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