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Monitoring of incorporation of magnetic ions into II–VI semiconductor nanocrystals by optical and magneto-optical spectroscopy

机译:通过光学和磁光光谱法监测将磁性离子掺入II-VI半导体纳米晶体的过程

摘要

Colloidal CdS:Mn semiconductor nanocrystals are synthesized by co-precipitation method using different concentrations of the CdCl2, MnCl2, Na2S precursors and the capping agent. UV–vis absorption, photoluminescence and Faraday rotation spectra were combined for monitoring the formation of nanoparticles and incorporation of Mn magnetic ions into CdS nanoparticles. Through step by step observation of the bsorption edge structure in the absorption spectrum of colloidal suspension the CdS:Mn nanocrystal growth was monitored, whereas dopant incorporation was controlled through changes in photoluminescence and Faraday rotation spectra. Faraday rotation spectra in CdS:Mn nanocrystals demonstrate peculiarities, which are associated with s, p–d exchange interaction between magnetic ions and band carriers in these nanostructures.
机译:采用不同浓度的CdCl2,MnCl2,Na2S前驱体和封端剂,通过共沉淀法合成CdS:Mn胶态半导体纳米晶体。结合了紫外可见吸收,光致发光和法拉第旋转光谱,以监测纳米颗粒的形成以及将锰磁性离子掺入CdS纳米颗粒中。通过逐步观察胶体悬浮液吸收光谱中的吸收边缘结构,可以监测CdS:Mn纳米晶体的生长,而掺杂剂的掺入则通过光致发光和法拉第旋转光谱的变化来控制。 CdS:Mn纳米晶体中的法拉第旋转光谱显示出特殊性,这些特性与这些纳米结构中的磁性离子和带载子之间的s,p–d交换相互作用有关。

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