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首页> 外文期刊>ACS Omega >Transition Metal Adsorbed-Doped ZnO Monolayer: 2D Dilute Magnetic Semiconductor, Magnetic Mechanism, and Beyond 2D
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Transition Metal Adsorbed-Doped ZnO Monolayer: 2D Dilute Magnetic Semiconductor, Magnetic Mechanism, and Beyond 2D

机译:过渡金属吸附掺杂的ZnO单层:2D稀磁半导体,磁性机制,超出2D

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As an improvement over organic or inorganic layered crystals, the synthetic monolayer ZnO(M) inherits semiconductivity and hostability from its bulk, yet it acts as a promising host for dilute magnetic semiconductors. Here, we report the electronic and magnetic properties of ZnO(M) doped with one 3d transition metal ion and simultaneously adsorbed with another 3d transition metal ion. Two sequences are studied, one where the dopant is fixed to Mn and the adsorbate is varied from Sc to Zn and another where the dopant and adsorbate are reversed. First-principles results show that the stable adsorbed?doped systems possess a lower bandgap energy than that of the host. System magnetic moments can be tuned to |5 – x |μ_(B), where x refers to the magnetic moment of the individual 3d atom. An interplay between superexchange and direct exchange yields a ferromagnetic system dually adsorbed?doped with Mn. In addition to a novel material design route, the magnetic interaction mechanism is found beyond two dimensions, having been identified for its three-dimensional bulk and zero-dimensional cluster counterparts.
机译:作为对有机或无机层状晶体的改善,合成单层ZnO(M)从其体积遗传半导体和宿主,但它用作稀磁半导体的有前途的主体。这里,我们报告掺杂有一个3D过渡金属离子的ZnO(M)的电子和磁性,并同时吸附与另一种3D过渡金属离子。研究了两种序列,将掺杂剂固定在Mn和吸附物的情况下,从SC到Zn变化,并且掺杂剂和吸附物的另一个逆转。第一原理结果表明,稳定的吸附?掺杂的系统具有比主体更低的带隙能量。系统磁性矩可以调谐到| 5 - X |μ_(b),其中 x是指各个3d原子的磁矩。超速和直接交换之间的相互作用产生了一种双磁性系统,双重吸附?掺杂有Mn。除了新颖的材料设计路线之外,磁共相互作用机构除了超大二维之外,已经识别其三维散装和零维簇对应物。

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