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Influence of experimental parameters on iron oxide nanoparticle properties synthesized by thermal decomposition: size and nuclear magnetic resonance studies

机译:实验参数对热分解合成氧化铁纳米粒子特性的影响:尺寸和核磁共振研究

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A study of the experimental conditions to synthesize monodisperse iron oxide nanocrystals prepared from the thermal decomposition of iron(III) acetylacetonate was carried out in the presence of surfactants and a reducing agent. The influence of temperature, synthesis time and surfactant amounts on nanoparticle properties is reported. This investigation combines relaxometric characterization and size properties. The relaxometric behavior of the nanomaterials depends on the selected experimental parameters. The synthesis of iron oxide nanoparticles with a high relaxivity and a high saturation magnetization can be obtained with a short reaction time at high temperature. Moreover, the influence of surfactant concentrations determines the optimal value in order to produce iron oxide nanoparticles with a narrow size distribution. The optimized synthesis is rapid, robust and reproductive, and produces nearly monodisperse magnetic nanocrystals.
机译:在表面活性剂和还原剂存在下进行由铁(III)乙酰丙酮的热分解制备的单分散氧化铁纳米晶体的实验条件的研究。 报道了温度,合成时间和表面活性剂对纳米颗粒性能的影响。 本研究结合了放松表征和尺寸特性。 纳米材料的放松行为取决于所选择的实验参数。 具有高松弛率和高饱和磁化的氧化铁纳米颗粒的合成可以在高温下进行短反应时间。 此外,表面活性剂浓度的影响决定了最佳值,以产生具有窄尺寸分布的氧化铁纳米颗粒。 优化的合成是快速,稳健和生殖的,并产生几乎单分散的磁性纳米晶体。

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