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Hydrophilic Magnetochromatic Nanoparticles with Controllable Sizes and Super-high Magnetization for Visualization of Magnetic Field Intensity

机译:具有可控大小和超高磁化强度的亲水性磁致变色纳米粒子,用于可视化磁场强度

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Hydrophilic Fe3O4 nanoparticles with controllable size and shape have been fabricated using a facile solvothermal approach followed by surface modification with polyacrylic acid (PAA). The nanoparticles form one-dimension photonic crystal structure under external magnetic field ranging from 29.6 to 459 G. The reflection peaks of formed photonic crystals cover the entire visible spectrum, which indicates a good magnetochromatic property and prospect of wide applications. The size and shape of Fe3O4 nanoparticles are controlled by changing the ratio between ethylene glycol and diethylene glycol. In the process of surface modification, PAA synthesized by free radical polymerization was chemisorbed onto the surface of Fe3O4 particles with the aid of Fe3+ cations, which renders the particles well dispersed in aqueous solution with high thermo-stability. The Fe3O4 particles exhibit ferrimagnetism with a high saturation magnetization value of 88.0?emu/g. Both the high magnetization and the wide reflection spectrum under magnetic field make the magnetochromatic nanoparticles a promising material for visualization of the distribution of magnetic field intensity on microfluidic chips.
机译:使用一种方便的溶剂热方法,然后用聚丙烯酸(PAA)进行表面修饰,制备了尺寸和形状可控的亲水性Fe 3 O 4 纳米粒子。纳米粒子在29.6至459 G的外部磁场下形成一维光子晶体结构。所形成的光子晶体的反射峰覆盖整个可见光谱,这表明其良好的磁致变色特性和广阔的应用前景。 Fe 3 O 4 纳米粒子的大小和形状通过改变乙二醇与二甘醇的比例来控制。在表面改性过程中,借助Fe 3 + 自由基聚合合成的PAA被化学吸附在Fe 3 O 4 颗粒的表面上 3 O 4 颗粒表现出亚铁磁性,其饱和磁化强度值为88.0emu / g。磁场下的高磁化强度和宽反射光谱都使磁致变色纳米粒子成为用于可视化微流控芯片上磁场强度分布的有前途的材料。

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