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Structure and Energetics of (111) Surface of γ-Al2O3: Insights from DFT Including Periodic BoundaryApproach

机译:γ-Al2O3(111)表面的结构和能量学:DFT的研究包括周期边界方法

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摘要

The (111) surface of γ-alumina has been reexamined, and a new (111) surface model has been suggested. The local structure of this new surface of γ-alumina, (111)n, has been optimized by the density functionals along with the full electron basis sets by using periodic boundary condition. This newly modeled (111)n surface is characterized by the same stability as that of the (110) surface, and its surface energy amounts to 2.561 J/m2, only about 0.002 J/m2 larger than that of (110). Three different types of the tricoordinated Al centers have been identified on (111)n. Molecular orbital (MO) analysis and the population analysis demonstrate that one type of Al, Al(I), is a nonpaired electron center. The singly occupied MO on Al(I) center is expected to play an important role in the catalytic activities of the γ-alumina. Moreover, the neighboring Al (Al(III)) on the (111)n surface provides suitable acceptance position for the electron donating groups. The defected surfaces of (111)n are found to be having a similar stability. The detachment of Al(I) from the (111)n surface results in disappearance of the nonpaired electron centers. Meanwhile, the attachment of Al(I) on (111)n surface willproduce rich nonpaired electron centers on this new surface. Therefore,this newly defined surface is expected to attract the research interestsin the catalytic activities of γ-alumina.
机译:γ-氧化铝的(111)表面已经过重新检查,并提出了新的(111)表面模型。 γ-氧化铝这个新表面(111)n的局部结构已经通过使用周期性边界条件通过密度泛函以及全电子基集进行了优化。这个新建模的(111)n表面具有与(110)表面相同的稳定性,其表面能为2.561 J / m 2 ,仅约0.002 J / m 2 大于(110)。在(111)n上已识别出三种不同类型的三配位Al中心。分子轨道(MO)分析和种群分析表明,一种类型的Al(Al(I))是不成对的电子中心。预期在Al(I)中心上单独占据的MO在γ-氧化铝的催化活性中起重要作用。而且,在(111)n表面上的相邻的Al(Al(III))为给电子基团提供合适的接受位置。发现(111)n的缺陷表面具有相似的稳定性。 Al(I)从(111)n表面脱离导致未配对的电子中心消失。同时,Al(I)在(111)n表面上的附着将在这个新表面上产生大量不成对的电子中心。因此,这种新定义的表面有望吸引研究兴趣在γ-氧化铝的催化活性上。

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