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Zero valence iron nanocube decoration of graphitic nanoplatelets

机译:石墨纳米片的零价铁纳米立方体修饰

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摘要

Graphitic nanoplatelets (GNPs) have been treated using an ultrasonicated ozonolysis procedure to produce stable aqueous dispersions that facilitate deposition of thin films using electrophoretic deposition. The thin GNP films were then coated with zero valence (ZV) iron nanocubes using a pulsed electrodeposition technique. Characterization of the ZV-iron coating with deposition time revealed that the changing magnetic character of the ferromagnetic-graphitic hybrid material was related to the nucleation density and growth of the ZV-iron nanocubes. Density functional theory calculations show a preference for ZV-iron adsorption at the oxygen sites of the GNPs, with ZV-iron displacement of oxygen groups favored in some configurations. Transmission electron microscopy studies confirm ZV-iron growth nucleates preferentially at the graphite nanoplatelet edges and the hybrid material magnetism is affected by the convergent crystalline grain boundaries formed between adjacent ZV-iron nanocubes.
机译:石墨纳米片 (GNP) 已使用超声波臭氧分解程序进行处理,以产生稳定的水分散体,从而使用电泳沉积促进薄膜的沉积。然后使用脉冲电沉积技术在GNP薄膜上涂覆零价(ZV)铁纳米立方体。ZV铁涂层随沉积时间的表征表明,铁磁-石墨杂化材料的磁性变化与ZV铁纳米立方体的成核密度和生长有关。密度泛函理论计算表明,在GNPs的氧位点,ZV-铁优先吸附在GNPs的氧位点,在某些构型中,ZV-铁对氧基的置换更有利。透射电子显微镜研究证实,ZV-铁生长成核优先在石墨纳米片边缘形成,并且杂化材料的磁性受到相邻ZV-铁纳米立方体之间形成的收敛晶粒边界的影响。

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