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A Review on Chemical Synthesis, Characterization and Optical Properties of Nanocrystalline Transition Metal Doped Dilute Magnetic Semiconductors

机译:纳米晶过渡金属掺杂稀磁半导体的化学合成,表征及光学性质研究进展

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Nanomaterials have fascinated researchers in recent years because these materials exhibit unusual optical, magnetic and electrical properties as compared to their bulk counterparts. Incorporating impurity ions into a semiconducting host to extend its properties has been one of the most important techniques that paved the way for the modern technology based on spintronic devices. Over the past few years, oxide based dilute magnetic semiconductors (DMSs) have gained remarkable interest due to the possibility of inducing room temperature ferromagnetism. This review describes the experimental developments and optical properties of oxide based DMSs, including the recent results on ZnO, CdO and In_2O_3 based systems. Optical properties of transition metal (TM)-doped ZnO, CdO and In_2O_3 dilute magnetic semiconductor nanoparticles show red shift in energy band gaps. Such types of phenomena are attributed to sp-d exchange interactions between band electrons and localized d-electrons of the substituted transition metal ions. Table of Contents
机译:近年来,纳米材料吸引了研究人员,因为与大量同类材料相比,纳米材料具有不同寻常的光学,磁性和电学性质。将杂质离子掺入半导体主体中以扩展其性能一直是最重要的技术之一,这为基于自旋电子器件的现代技术铺平了道路。在过去的几年中,基于氧化物的稀磁半导体(DMS)由于可能诱发室温铁磁性而引起了人们的极大兴趣。这篇综述描述了基于氧化物的DMS的实验发展和光学性能,包括基于ZnO,CdO和In_2O_3的系统的最新结果。掺杂过渡金属(TM)的ZnO,CdO和In_2O_3稀磁半导体纳米粒子的光学性能在能带隙中显示出红移。这类现象归因于取代的过渡金属离子的能带电子和局部d电子之间的sp-d交换相互作用。目录

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