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Effect of annealing temperatures on the self-assembly properties of iron (III) oxide nano-particles

机译:退火温度对三氧化二铁纳米粒子自组装性能的影响

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The use of Atomic Force Microscopy (AFM) to investigate the effect of different annealing temperatures on the selfassembly properties of Iron (III) oxide nanoparticles prepared by the Langmuir-Schaefer method is experimentally demonstrated and discussed. Ferritin molecules containing a self-assembled core of iron oxide undergo thermal treatment to produce the nanoparticles. When the Iron (III) oxide nanoparticles were subjected to annealing temperatures, they were found to coalesce especially at the boundary of the graphitic substrate to conserve energy. At higher temperatures the particles were again seen to coalesce more, forming islands at the graphitic boundary. Further studies revealed that these islands represented different phases of Iron (III) oxide nanoparticles that resembledγ-Fe2O3, α-Fe2O3and a third phase that likely was a combination of γ-Fe2O3 and α-Fe2O3.
机译:实验证明并讨论了使用原子力显微镜(AFM)研究不同退火温度对用Langmuir-Schaefer方法制备的氧化铁(III)纳米粒子自组装性能的影响。包含自组装氧化铁核的铁蛋白分子经过热处理以生成纳米颗粒。当将氧化铁(III)纳米颗粒置于退火温度下时,发现它们会聚结,尤其是在石墨基材的边界处聚结以节省能量。在较高温度下,再次看到颗粒聚结得更多,在石墨边界处形成岛。进一步的研究表明,这些岛代表了类似于γ-Fe2O3,α-Fe2O3的氧化铁(III)纳米粒子的不同相以及可能是γ-Fe2O3和α-Fe2O3的第三相。

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