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Surface Energy and Thermodynamic Stability of gamma-Alumina:Effect of Dopants and Water

机译:γ-氧化铝的表面能和热力学稳定性:掺杂剂和水的影响

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Retaining large surface areas in alumina powders during high-temperature annealing is a major challenge in applications as catalyst supports and ceramic precursors.This is because the alumina surface area drastically decreases with transformation from the gamma modification (defect spinel structure) into the a modification (corundum structure).The objective of this work is to show the thermodynamic basis of using additives,such as Zr and Mg,to control the gamma-Al_2O_3 surface and bulk energetics and to manipulate the transformation temperature and surface area.These additives are observed to change the pattern of phase transformation and densification.Direct measurements of heats of solution in a lead borate melt of pure and doped alumina as a function of surface area enabled us to experimentally derive trends in the surface energies of hydroxylated surfaces.Accounting for heats of water adsorption measured on pure and doped alumina surfaces allowed us to delineate the thermodynamic effects of hydration on surface energies.Zr-doped gamma-alumina showed a higher energy of the hydroxylated surface than did pure gamma-alumina but showed a lower energy of the anhydrous surface.Mg addition does not change surface energies significantly but decreases the energetic instability of the bulk gamma phase.
机译:在用作催化剂载体和陶瓷前体的应用中,在高温退火过程中在氧化铝粉末中保持较大的表面积是一项重大挑战,这是因为随着从伽马变体(缺陷尖晶石结构)到变体(这项工作的目的是展示使用Zr和Mg等添加剂来控制γ-Al_2O_3表面和本体能以及控制相变温度和表面积的热力学基础。改变相变和致密化的模式。直接测量纯铝和掺杂氧化铝的硼酸铅熔体中溶液的热量随表面积的变化,使我们能够通过实验得出羟基化表面的表面能趋势。在纯氧化铝和掺杂氧化铝表面上测得的吸附允许我们描述热力学水合对表面能的影响掺Zr的γ-氧化铝比纯γ-氧化铝具有更高的羟基化表面能,但无水表面的能量较低.Mg的添加不会显着改变表面能,但会降低能量的不稳定性体γ相

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