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Melting Behaviour of Gold-Platinum Nanoalloy Clusters by Molecular Dynamics Simulations

机译:分子动力学模拟金 - 铂纳米铝簇的熔化行为

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The melting behavior of bimetallic gold-platinum nanoclusters is studied by applying Brownian-type isothermal molecular dynamics (MD) simulation, a program modified from the cubic coupling scheme (CCS). The process begins with the ground-state structures obtained from global minimum search algorithm and proceeds with the investigation of the effect of temperature on the thermal properties of gold-platinum nanoalloy clusters. N-body Gupta potential has been employed in order to account for the interactions between gold and platinum atoms. The ground states of the nanoalloy clusters, which are core-shell segregated, are heated until they become thermally segregated. The detailed melting mechanism of the nanoalloy clusters is studied via this approach to provide insight into the thermal stability of the nanoalloy clusters.
机译:通过施加褐色型等温分子动力学(MD)模拟来研究双金属金 - 铂纳米能器的熔化行为,从立方耦合方案(CC)修改的程序。该过程始于从全局最小搜索算法获得的地态结构开始,并进行了对温度对金 - 铂纳米拿合金簇热特性的影响的研究。已经采用了N-BodGu PPPTA电位,以考虑黄金和铂原子之间的相互作用。将纳米砂簇的地面是核 - 壳分离的纳米砂簇,加热直至它们变得热隔离。通过该方法研究了纳米氧化氢簇的详细熔融机理,以了解纳米拿薄簇的热稳定性的洞察。

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