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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Second nearest-neighbor modified embedded-atom method interatomic potentials for the Pd-M (M = Al, Co, Cu, Fe, Mo, Ni, Ti) binary systems
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Second nearest-neighbor modified embedded-atom method interatomic potentials for the Pd-M (M = Al, Co, Cu, Fe, Mo, Ni, Ti) binary systems

机译:PD-M的第二最近邻修改的嵌入式原子方法(M = Al,Co,Cu,Fe,Mo,Ni,Ti)二元系统的网状电位

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Palladium (Pd) has attracted attention as one of the major components of noble metal catalysts due to its excellent reactivity to a wide range of catalytic reactions. It is important to predict and control the atomic arrangement in catalysts because their properties are known to be affected by it. Therefore, to enable atomistic simulations for investigating the atomic scale structural evolution, we have developed interatomic potentials for Pd-M (M = Al, Co, Cu, Fe, Mo, Ni, Ti) binary systems based on the second nearest-neighbor modified embeddedatom method formalism. These potentials reproduce various fundamental properties of the alloys (the structural, elastic and thermodynamic properties of compound and solution phases, and order-disorder transition temperature) in reasonable agreements with experimental data, first-principles calculations and CALPHAD assessments. Herein, we propose that these potentials can be applied to the design of robust bimetallic catalysts by predicting the shape and atomic arrangement of Pd bimetallic nanoparticles.
机译:钯(Pd)由于其对各种催化反应的优异反应性而引起了贵金属催化剂的主要组分之一。预测和控制催化剂中的原子排列是重要的,因为已知其性质受其影响。因此,为了启用用于调查原子尺度结构演化的原子模拟,我们已经开发了基于第二最近邻的PD-M(M = Al,Cu,Cu,Fe,Mo,Ni,Ti)二元系统的网状模拟嵌入方法形式主义。这些电位在与实验数据的合理协议中繁殖了合金的各种基本性质(化合物和溶液阶段的结构,弹性和热力学性能,以及秩序紊乱的转变温度),第一原则计算和鱿鱼评估。在此,我们提出通过预测Pd双金属纳米颗粒的形状和原子布置来应用这些电位对鲁棒双金属催化剂的设计。

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