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Phase diagram and segregation of Ag-Co nanoalloys: insights from theory and simulation

机译:Ag-Co纳米合金的相图和偏析:理论和模拟的启示

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摘要

Understanding the phase diagram is the first step to identifying the structure-performance relationship of a material at the nanoscale. In this work, a modified nanothermodynamical model has been developed to predict the phase diagrams of Ag-Co nanoalloys with the size of 1 similar to 100 nm, which also overcomes the difference in the predicted results between theory and simulation for the first time. Based on this modified model, the phase diagrams of Ag-Co nanoalloys with various polyhedral morphologies (tetrahedron, cube, octahedron, decahedron, dodecahedron, rhombic dodecahedron, truncated octahedron, cuboctahedron, and icosahedron) have been predicted, showing good agreement with molecular dynamics simulations at the nanoscale of 1 similar to 4 nm. In addition, the surface segregation of Ag-Co nanoalloys has been predicted with a Co-rich core/Ag-rich surface, which is also consistent with the simulation results. Our results highlight a useful roadmap for bridging the difference between theory and simulation in the prediction of the phase diagram at the nanoscale, which will help both theorists and experimentalists.
机译:了解相图是识别纳米级材料的结构与性能关系的第一步。在这项工作中,已经开发了一种改进的纳米热力学模型来预测尺寸为1的Ag-Co纳米合金的相图,类似于100 nm,这也首次克服了理论和模拟之间的预测结果差异。根据此修改后的模型,已预测了具有各种多面体形态(四面体,立方,八面体,十面体,十二面体,菱形十二面体,截短的八面体,立方八面体和二十面体)的Ag-Co纳米合金的相图。 1的纳米级模拟类似于4 nm。另外,已经预测了具有富钴芯/富银表面的Ag-Co纳米合金的表面偏析,这也与模拟结果一致。我们的研究结果突出了弥合理论与模拟之间差异的有用路线图,以预测纳米级的相图,这将对理论家和实验家都提供帮助。

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