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Energetics of Mg, B, Cu, and Ti Atoms Adsorbed on the ZnO Polar Surfaces from First Principles

机译:从第一原理到吸附在ZnO极性表面上的Mg,B,Cu和Ti原子的能量学

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Using the density functional theory we have studied the energetics of the adsorbed atoms, Cu and Ti, on the (0001) zinc and (000-1) oxygen polar surfaces of zinc oxide (ZnO). We have revisited the energetics of Mg and B atoms on the surfaces (Phys. Rev. B 77 035330 (2008)) and investigated them in connection with those of Cu and Ti. On the Zn polar surface, B and Ti atoms are adsorbed on the hcp site and are strongly bound to the oxygen atoms in the subsurface. Mg atom preferably binds to the three oxygen atoms on the O polar surface in the distances of 2 Å. Cu atom is also adsorbed on the Zn surface. We found an energy barrier 0.17 eV for the Cu migration along the path from the fcc site to the hcp site on the Zn surface. After the structural relaxation, Ti atom on the O surface infiltrated into the subsurface region and fitted into the tetrahedral cage made of the four oxygen atoms. Our results are consistent with the available experimental data and explain their energetics in atomic scale. Determinant factor of their preference of the sites is investigated. [DOI: 10.1380/ejssnt.2011.199]
机译:使用密度泛函理论,我们研究了氧化锌(ZnO)的(0001)锌和(000-1)氧极性表面上吸附原子Cu和Ti的能量。我们已经重新研究了表面上Mg和B原子的能级(Phys。Rev. B 77 035330(2008)),并与Cu和Ti进行了研究。在Zn极性表面上,B和Ti原子吸附在hcp位置上,并与次表面的氧原子牢固结合。 Mg原子优选以2的距离与O极表面上的三个氧原子结合。 Cu原子也被吸附在Zn表面上。我们发现,沿着Zn表面从fcc位置到hcp位置的路径中的Cu迁移,能垒为0.17 eV。结构弛豫后,O表面的Ti原子渗透到地下区域,并嵌入由四个氧原子组成的四面体笼中。我们的结果与可用的实验数据一致,并在原子尺度上解释了它们的能量学。调查了他们偏爱这些地点的决定因素。 [DOI:10.1380 / ejssnt.2011.199]

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