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Influence of string-like cooperative atomic motion on surface diffusion in the (110) interfacial region of crystalline Ni

机译:串状协作原子运动对结晶镍(110)界面区域中表面扩散的影响

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摘要

Although we often think about crystalline materials in terms of highly organized arrays of atoms, molecules, or even colloidal particles, many of the important properties of this diverse class of materials relating to their catalytic behavior, thermodynamic stability, and mechanical properties derive from the dynamics and thermodynamics of their interfacial regions, which we find they have a dynamics more like glass-forming (GF) liquids than crystals at elevated temperatures. This is a general problem arising in any attempt to model the properties of naturally occurring crystalline materials since many aspects of the dynamics of glass-forming liquids remain mysterious. We examine the nature of this phenomenon in the “simple” case of the (110) interface of crystalline Ni, based on a standard embedded-atom model potential, and we then quantify the collective dynamics in this interfacial region using newly developed methods for characterizing the cooperative dynamics of glass-forming liquids. As in our former studies of the interfacial dynamics of grain-boundaries and the interfacial dynamics of crystalline Ni nanoparticles (NPs), we find that the interface of bulk crystalline Ni exhibits all the characteristics of glass-forming materials, even at temperatures well below the equilibrium crystal melting temperature, Tm. This perspective offers a new approach to modeling and engineering the properties of crystalline materials.
机译:尽管我们经常从原子,分子甚至胶体粒子的高度组织阵列的角度来考虑晶体材料,但是这类不同种类的材料的许多重要特性都与动力学,热力学稳定性和机械特性有关以及它们的界面区域的热力学,我们发现它们的动力学更像玻璃形成(GF)液体,而不是高温下的晶体。这是在对天然存在的晶体材料的特性进行建模的任何尝试中都会出现的普遍问题,因为玻璃形成液体动力学的许多方面仍然是未知的。我们基于标准的嵌入原子模型电势,研究了晶体镍(110)界面“简单”情况下这种现象的性质,然后使用新开发的表征方法量化了该界面区域的集体动力学。玻璃形成液体的协同动力学。正如我们之前对晶界界面动力学和结晶镍纳米粒子(NPs)界面动力学的研究一样,我们发现,即使在低于25℃的温度下,块状结晶镍的界面也具有玻璃形成材料的所有特性。平衡晶体熔化温度,Tm。这种观点提供了一种对晶体材料的特性进行建模和工程设计的新方法。

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