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Modeling and Synthesis of Alumina Whiskers Based on the Vapor Deposition Process

机译:基于气相沉积法的氧化铝晶须的建模与合成

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摘要

This study simulated the bulk structure and surface energy of Al2O3 based on the density of states (DOS) and studied the synthesis and microstructure of one-dimensional Al2O3 whiskers. The simulation results indicate that the (001) surface has a higher surface energy than the others. The growth mechanism of Al2O3 whiskers follows vapor–solid (VS) growth. For the (001) surface with the higher surface energy, the driving force of crystal growth would be more intense in the (001) plane, and the alumina crystal would tend to grow preferentially along the direction of the (001) plane from the tip of the crystal. The Al2O3 grows to the shape of whisker with [001] orientation, which is proved both through modeling and experimentation.
机译:本研究基于态密度(DOS)模拟了Al2O3的整体结构和表面能,并研究了一维Al2O3晶须的合成和微观结构。仿真结果表明(001)表面具有比其他表面更高的表面能。 Al2O3晶须的生长机理遵循汽相(VS)生长。对于具有较高表面能的(001)表面,晶体生长的驱动力将在(001)平面中更强,并且氧化铝晶体将倾向于从尖端开始沿着(001)平面的方向优先生长水晶。 Al2O3成长为[001]取向的晶须形状,这已通过建模和实验证明。

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