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首页> 外文期刊>Modelling and simulation in materials science and engineering >A 3D platform for the morphology modulation of materials: first principles calculations on the thermodynamic stability and surface structure of metal oxides: Co3O4, alpha-Fe2O3, and In2O3
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A 3D platform for the morphology modulation of materials: first principles calculations on the thermodynamic stability and surface structure of metal oxides: Co3O4, alpha-Fe2O3, and In2O3

机译:用于材料形态调制的3D平台:关于金属氧化物Co3O4,α-Fe2O3和In2O3的热力学稳定性和表面结构的第一原理计算

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摘要

Essentially, the exposed crystal planes of a given material, which primarily determine their morphology, tremendously affect its behavior. First principle calculations, based on the Wulff construction model and broken bonding density index, have been performed to calculate the equilibrium and their transformations for different metal oxides: Co3O4, alpha-Fe2O3, and In2O3. Present results point out that starting by surface thermodynamics is a helpful approach to predict and assess the morphology transformations of these materials. These complete set of morphologies may serve as a guide for researchers, when analyzing the images from electron microscopies, to gain further understanding of how to control crystal shape synthetically by tuning the surface chemistry and by controlling the relative values of surface energies.
机译:本质上,一种给定材料的裸露晶面(主要决定其形态)会极大地影响其行为。基于Wulff构造模型和断裂的键合密度指数,进行了第一性原理计算,以计算不同金属氧化物(Co3O4,α-Fe2O3和In2O3)的平衡及其相变。目前的结果指出,从表面热力学开始是预测和评估这些材料的形态转变的有用方法。这些完整的形态可以为研究人员提供指导,在分析电子显微图像时,可以进一步了解如何通过调节表面化学性质和控制表面能的相对值来综合控制晶体形状。

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