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Magnetic properties of doped II-VI semiconductor nanocrystals

机译:掺杂的II-VI半导体纳米晶体的磁性

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摘要

We investigate the magnetic properties of two typical II-VI semiconducting nanocrystals, namely, ZnS and ZnO, doped with various concentrations of a transition metal ion, Mn. A wide range of dopant concentrations was explored without changing the size of the nanocrystal, thereby allowing us to study the concentration dependence of various properties independent of any size variation of the host. However, only small doping concentrations could be realized in each case. All the studies were thus carried out with ZnS and ZnO nanocrystals with their respective average sizes fixed at about 1.6 and 4.7 nm. We show that the magnetic properties of such doped systems, remaining paramagnetic down to the lowest temperature (<3 K), can provide important and accurate information concerning the dopant level in such samples.
机译:我们研究了两种典型的II-VI型半导体纳米晶体ZnS和ZnO的磁学性质,它们分别掺杂了不同浓度的过渡金属离子Mn。在不改变纳米晶体尺寸的情况下探索了多种掺杂剂浓度,从而使我们能够研究与基质的任何尺寸变化无关的各种性质的浓度依赖性。但是,在每种情况下只能实现很小的掺杂浓度。因此,所有的研究都是用ZnS和ZnO纳米晶体进行的,它们各自的平均尺寸固定在约1.6和4.7 nm。我们表明,此类掺杂系统的磁性能(保持顺磁至最低温度(<3 K))可以提供有关此类样品中掺杂物含量的重要而准确的信息。

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