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首页> 外文期刊>European journal of inorganic chemistry >Synthesis and Characterization of Rare‐Earth Orthoferrite LnFeO 33 Nanoparticles for Bioimaging
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Synthesis and Characterization of Rare‐Earth Orthoferrite LnFeO 33 Nanoparticles for Bioimaging

机译:稀土镍酯LNFEO 3 3纳米粒子的合成与表征

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> A combination of sol–gel synthesis and thermal decomposition was developed for preparing nanosized, perovskite‐type LnFeO 3 (Ln = Eu, Gd, Tb) powders. Perovskite‐type powders with crystalline particles of 100 nm average size, as determined by transmission electron microscopy (TEM), could be obtained after a thermal treatment at 800 °C. The perovskite nanoparticles (NPs) were further characterized by X‐ray powder diffraction and M?ssbauer spectroscopy. These were in agreement with the pure perovskite LnFeO 3 structure with the expected Zeeman sextet corresponding to a magnetically ordered phase. Magnetization measurements [ M ( H )] at 5 K and 300 K showed a behavior that is dominated by antiferromagnetic interactions and weak ferromagnetism in EuFeO 3 , while for Ln = Gd, Tb, they were dominated by the low ordering temperature Ln magnetic sublattice. The colloidal aqueous NPs suspensions exhibited no significant leaching of free Ln 3+ ions. Their relaxivities define them as potential T 2 MRI contrast agents for further biomedical applications. The NPs showed fast uptake and no cytotoxicity at concentrations below 62.5 μg/mL with respect to Hela cells.
机译:<摘要型=“main”> >溶胶 - 凝胶合成和热分解的组合用于制备纳米粒化,钙钛矿型LNFeo 3 (Ln = Eu,Gd,Gd,TB)粉末。通过透射电子显微镜(TEM)测定的具有100nm平均尺寸的结晶颗粒的钙钛矿型粉末可以在800℃的热处理之后获得。通过X射线粉末衍射和M 2 Ssbauer光谱,进一步表征钙钛矿纳米颗粒(NPS)。这些与纯Perovskite LNFeo 3 结构一致,其中具有对应于磁排序相的预期塞曼塞族。 5 k和300k的磁化测量[ m ( h el)]显示了在Eufeo 3 中由反铁磁相互作用和弱铁磁性构成的行为。 ,而对于LN = GD,TB,它们由低订购温度LN磁性分组支配。胶体NPS悬浮液没有无明显浸出的游离LN 3 + / sup>离子。它们的放松性将它们定义为潜在的 T MRI造影剂,用于进一步生物医学应用。 NPS在62.5μg/ mL的浓度相对于HeLa细胞显示出快速摄取和NO细胞毒性。

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