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Preparation and Characterization of Fe3O4 Particles with Novel Nanosheets Morphology and Magnetochromatic Property by a Modified Solvothermal Method

机译:改进的溶剂热法制备具有新型纳米片形和磁致变色性质的Fe3O4颗粒及其表征

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摘要

Novel-morphological Fe3O4 nanosheets with magnetochromatic property have been prepared by a modified solvothermal method. Such nanosheets could form one-dimension photonic crystal under an external magnetic field. The Fe3O4 nanosheets suspension could strongly diffract visible light and display varied colors with changing the intensity of the magnetic field. The photonic response is rapid, fully reversible and widely tunable in the entire visible spectrum. Excellent magnetic properties of these Fe3O4 nanosheets are exhibited with a high saturation magnetization (82.1 emu/g), low remanence (13.85 emu/g) and low coercive force (75.95 Oe). The amount of the solvent diethylene glycol (DEG) plays a key role in the formation of the sheet-shaped morphology. When the ratio of the DEG reaches 100%, the growing of the crystal plane (111) of Fe3O4 is inhibited and the sheet-like Fe3O4 crystals are formed.
机译:通过改进的溶剂热法制备了具有磁致变色特性的新型形貌的Fe3O4纳米片。这样的纳米片可以在外部磁场下形成一维光子晶体。 Fe3O4纳米片悬浮液可以随着磁场强度的变化而强烈衍射可见光并显示出各种颜色。在整个可见光谱中,光子响应是快速,完全可逆的且可广泛调谐的。这些Fe3O4纳米片具有出色的磁性,具有高饱和磁化强度(82.1 emu / g),低剩磁(13.85 emu / g)和低矫顽力(75.95 Oe)。溶剂二甘醇(DEG)的量在片状形态的形成中起关键作用。当DEG的比例达到100%时,Fe 3 O 4的晶面(111)的生长受到抑制,形成片状的Fe 3 O 4晶体。

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