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APS -APS March Meeting 2017 - Event - Structural and magnetic properties of magneto-luminescent ZnO-iron oxide core-shell nanoparticles.

机译:APS -APS 2017年3月会议-活动-磁致发光ZnO-氧化铁核壳纳米粒子的结构和磁性。

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Oxide core-shell nanoparticles have attracted considerable interest for its multifunctional properties with high electron correlation. Luminescent ZnO and ferromagnetic iron oxide have been exploited to develop magneto-luminescent nanomaterials. ZnO-Iron oxide core-shell nanoparticles have been developed using physiochemical method. Magnetic properties have been varied while keeping the luminescence intact in core-shell nanoparticles. Structural and physical properties have been investigated using XRD, TEM, RAMAN, XPS, PL, DLS, and SQUID magnetometer. DLS and TEM data show acceptable dispersion for synthesized core shell nanoparticles. The phase of the shell region has been controlled through annealing the samples at different environment. Rietvield refinement of XRD data clearly show a phase change of iron oxide in the shell region due to annealing. Temperature and field dependent magnetization data establish the ferromagnetism in core-shell nanoparticles. Variation in coercive field and remnant and saturation magnetization further confirms the presence of different iron oxides in the shell region. This research work is supported by National Cancer Institute (1R15 CA139390-01).
机译:氧化物核-壳纳米粒子因其具有高电子相关性的多功能特性而吸引了相当大的兴趣。发光的ZnO和铁磁性的氧化铁已经被用来开发磁致发光的纳米材料。 ZnO-氧化铁核-壳纳米粒子已使用物理化学方法开发。在保持核壳纳米粒子完整发光的同时,改变了其磁性。已经使用XRD,TEM,RAMAN,XPS,PL,DLS和SQUID磁力计研究了结构和物理特性。 DLS和TEM数据显示合成核壳纳米粒子的可接受分散度。通过在不同环境下对样品进行退火,可以控制壳区的相。 XRD数据的Rietvield修正清楚地表明,由于退火,壳区域中的氧化铁发生了相变。温度和磁场相关的磁化数据建立了核-壳纳米颗粒中的铁磁性。矫顽场以及残余和饱和磁化强度的变化进一步证实了壳区域中存在不同的氧化铁。这项研究工作得到了美国国家癌症研究所(1R15 CA139390-01)的支持。

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