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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Aggregates of Mn2+ Ions in Mesoporous Self-Assembled Cubic ZnS:Mn Quantum Dots: Composition, Localization, Structure, and Magnetic Properties
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Aggregates of Mn2+ Ions in Mesoporous Self-Assembled Cubic ZnS:Mn Quantum Dots: Composition, Localization, Structure, and Magnetic Properties

机译:介孔自组装立方ZnS:Mn量子点中Mn2 +离子的聚集体:组成,局部化,结构和磁性

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摘要

The source of collective magnetism in II-VI semiconductor quantum dots (QDs) doped with Mn2+ ions at high nominal impurity levels is still under debate. In the particular case of mesoporous, self-assembled cubic ZnS:Mn QDs, quantitative electron paramagnetic resonance (EPR) studies have shown that the Mn2+ ions incorporated in the core and on the surface of the QDs cannot be responsible for the observed collective magnetism because they remain in a diluted paramagnetic state up to the 50 000 ppm nominal concentration. Here we investigate the composition, localization, structure, and magnetic properties of the aggregates of Mn2+ ions incorporated in the mesoporous cZnS:Mn as a possible source of the observed collective magnetism. Samples of mesoporous cubic ZnS:Mn prepared by coprecipitation at several nominal impurity levels from 200 to 50 000 ppm are investigated by EPR, magnetometry, and analytical high resolution (scanning) transmission electron microscopy. The low temperature magnetic properties of the Mn2+ aggregates change from paramagnetic-like, for samples with nominal impurity levels up to 2000 ppm, to ones specific to larger clusters with distributed antiferromagnetic coupling at higher concentrations, behaving superparamagnetically above a certain temperature. There is also strong evidence that the Mn2+ aggregates responsible for the observed low temperature collective magnetism are incorporated as an amorphous phase of mainly Mn-Zn-O composition, localized in the interstices and pores of the mesoporous structure of the cubic ZnS:Mn QDs.
机译:掺有高标称杂质水平的Mn2 +离子的II-VI半导体量子点(QD)中的集体磁性来源仍在争论中。在介孔,自组装立方ZnS:Mn量子点的特殊情况下,定量电子顺磁共振(EPR)研究表明,结合在量子点的核中和表面上的Mn2 +离子对观察到的集体磁性不负责任,因为它们保持在稀释的顺磁性状态,直至标称浓度为50000 ppm。在这里,我们研究了掺入介孔cZnS:Mn中的Mn2 +离子聚集体的组成,局部化,结构和磁性,这是观察到的集体磁性的可能来源。通过EPR,磁力分析和高分辨率高分辨率(扫描)透射电子显微镜研究了通过共沉淀在200至50000 ppm的几个标称杂质水平下制备的介孔立方ZnS:Mn样品。 Mn2 +聚集体的低温磁性能从标称杂质水平高达2000 ppm的样品的顺磁性转变为特定的较大簇,具有较高浓度的分布反铁磁耦合且在一定温度下具有超顺磁性。也有确凿的证据表明,负责观察到的低温集体磁性的Mn2 +团聚体以主要为Mn-Zn-O成分的非晶相形式结合,位于立方ZnS:Mn QDs介孔结构的间隙和孔中。

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