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首页> 外文期刊>Nanotechnology >Characterization of the iron oxide phases formed during the synthesis of core-shell FexOy@C nanoparticles modified with Ag
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Characterization of the iron oxide phases formed during the synthesis of core-shell FexOy@C nanoparticles modified with Ag

机译:用AG改性核 - 壳Fexoy甲酰甲酰约的合成中形成的氧化铁相的表征

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摘要

Core-shell FexOy@C nanoparticles (NPs) modified with Ag were studied with x-ray diffraction, transmission electron microscopy, energy dispersive elemental mapping, Mossbauer spectroscopy, static magnetic measurements, and optical magnetic circular dichroism (MCD). FexOy@C NPs synthesized by the pyrolysis process of the mixture of Fe(NO3)(3)center dot 9H(2)O with oleylamine and oleic acid were added to a heated mixture of oleylamine and AgNO(3)in different concentrations. The final product was a mixture of iron oxide crystalline NPs in an amorphous carbon shell and Ag crystalline NPs. The iron oxide NPs were presented by two magnetic phases with extremely close crystal structures: Fe(3)O(4)and gamma-Fe2O3. Ag is shown to form crystalline NPs located very close to the iron oxide NPs. An assumption is made about the formation of hybrid FexOy@C-Ag NPs. Correlations were obtained between the Ag concentration in the fabricated samples, their magnetic properties and the MCD spectrum shape. Introducing Ag led to a approximately linear decrease of the NPs saturation magnetization depending upon the Ag concentration, it also resulted into the MCD spectrum shift to the lower light wave energies. MCD was also studied for the Fe3O4@C NPs synthesized earlier with the same one-step process using different heat treatment temperatures, and MCD spectra were compared for two series of NPs. A possible contribution of the surface plasmon excitation in Ag NPs to the MCD spectrum of the FexOy@C-Ag NPs is discussed.
机译:用X射线衍射,透射电子显微镜,能量分散元素映射,莫斯堡光谱,静态磁测量和光学磁圆形二色(MCD)研究了用AG改性用AG改性的C纳米粒子(NPS)。通过将油酸和油酸和油酸的Fe(NO3)(3)中心9h(2)O混合物的热解过程合成的Fexoy @ C nps以不同浓度的oleylamine和Agno(3)的加热混合物中加入。最终产物是无定形碳壳和Ag结晶NPS中的氧化铁结晶NP的混合物。氧化铁NP通过两个磁共相提出,具有极其紧密的晶体结构:Fe(3)O(4)和γ-Fe 2 O 3。 AG显示形成靠近氧化铁NPS的结晶NPS。关于形成杂种Fexoy @ C-Ag NPS的假设。在制造的样品中的Ag浓度,它们的磁性和MCD光谱形状之间获得相关性。引入Ag导致NPS饱和磁化的近似线性降低,这取决于Ag浓度,也导致MCD光谱转移到下光波能量。还研究了MCD的FE3O4 @ C NPS,使用不同的热处理温度的相同一步法合成,并将MCD光谱进行了两次NPS。讨论了表面等离子体激发到Fexoy @ C-AG NPS的MCD光谱中的表面等离子体激发的可能贡献。

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