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Transition from core-shell to Janus chemical configuration for bimetallic nanoparticles

机译:从核壳过渡到Janus的化学物质配置双金属纳米颗粒

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In order to determine the possibilities to control the chemical configuration of bimetallic nanoparticles, we have considered CuAg nanoparticles synthesized by a physical route as a model in this study. The synthesis was made by pulsed laser deposition under ultra-high vacuum conditions, via a sequential deposition procedure. We show that the temperature of the substrate and the absolute quantity of Ag in a particle are the main parameters that drive the chemical configuration. To explain the transition from a core-shell configuration to a Janus configuration as a function of Ag quantity, we have conducted density-functional theory calculations and atomistic molecular dynamics simulations to investigate the stability of this system. The results are presented together with the experimental observations.
机译:为了确定控制的可能性双金属的化学结构纳米粒子,我们认为CuAg纳米粒子合成的物理路线在本研究的模型。脉冲激光沉积在超高真空条件下,通过一个连续的沉积过程。底物和Ag)的绝对数量粒子是主要的参数驱动化学配置。从核壳配置杰纳斯配置Ag)数量的函数,我们进行了密度泛函理论计算和原子的分子动力学模拟研究的稳定性系统。实验观察。

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