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Local lattice distortions in oxygen deficient Mn-doped ZnO thin films, probed by electron paramagnetic resonance

机译:电子顺磁共振探测缺氧Mn掺杂ZnO薄膜的局部晶格畸变

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The structure and functional properties of metal oxide films for device applications are largely affected by oxygen vacancies. While the macroscopic relationship between functionality and oxygen supply during growth is easy to access, the local influence of changing oxygen content on the incorporated metal atoms has been rarely investigated. As a model system, we use Mn as a local probe in hetero- and homoepitaxial ZnO thin films for electron paramagnetic resonance (EPR). Mn is expected to be incorporated as Mn~(2+) in the Zn-lattice site of ZnO films grown in a wide range of oxygen partial pressures. The zero field splitting (ZFS) parameter D depends on the crystallographic cla ratio of ZnO : Mn lattice constants as it measures the trigonal distortion of oxygen tetrahedra at the Zn~(2+) site with respect to the Mn~(2+) site. The ZFS parameter D correlates linearly with displacement of Mn~(2+) ions along the c-axis in the MnO4 tetrahedra and the corresponding bond lengths between the Mn~(2+) ions and the axial oxygen ion.
机译:用于器件应用的金属氧化物膜的结构和功能特性在很大程度上受到氧空位的影响。虽然在生长过程中功能性和氧气供应之间的宏观关系很容易获得,但很少研究改变氧气含量对结合的金属原子的局部影响。作为模型系统,我们将Mn作为异质和同质外延ZnO薄膜中的局部探针用于电子顺磁共振(EPR)。 Mn有望以Mn〜(2+)的形式引入到在宽范围的氧分压下生长的ZnO薄膜的Zn晶格位中。零场分裂(ZFS)参数D取决于ZnO:Mn晶格常数的晶体cla比率,因为它测量的是Zn〜(2+)处相对于Mn〜(2+)处氧四面体的三角畸变。 ZFS参数D与Mn〜(2+)离子在MnO4四面体中沿c轴的位移以及Mn〜(2+)离子与轴向氧离子之间的相应键长线性相关。

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