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首页> 外文期刊>Chemistry - A European Journal >Synthesis of Ferrite Nanocrystals Stabilized by Ionic-Liquid Molecules through a Thermal Decomposition Route
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Synthesis of Ferrite Nanocrystals Stabilized by Ionic-Liquid Molecules through a Thermal Decomposition Route

机译:离子液体分子通过热分解途径稳定的铁氧体纳米晶体的合成

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摘要

A series of MxFe3−xO4 (M=Fe, Co, Ni, Zn; 0≤x≤1) ferrite nanocrystals stabilized by ionic-liquid molecules have been successfully synthesized through a thermal decomposition route. Instead of the widely used long-chain lipid surfactants and high-boiling solvents, the ionic-liquid molecules not only played the role of surfactants, but also served as reaction and dispersion media simultaneously in the preparation of ferrite nanocrystals. Due to their good fluidity under magnetic fields and high ionic conductivity, the ionic-liquid molecules and MxFe3−xO4 ferrite nanocrystal-based conducting ferrofluids were successfully used as electrolytes in an AC circuit. The open or closed state of the circuit was directly controlled by moving a permanent magnet so as to tune the position of the ferrofluids, and consequently, resulted in the “off” or “on” state of the four indicative yellow-light-emitting diodes. These results demonstrate that the conducting ferrofluids successfully play the role of “magnetic switch”.
机译:一系列M x Fe 3-x O 4 (M = Fe,Co,Ni,Zn;0≤x≤1)铁氧体通过热分解途径成功地合成了由离子液体分子稳定的纳米晶体。代替广泛使用的长链脂质表面活性剂和高沸点溶剂,离子液体分子不仅起表面活性剂的作用,而且在制备铁氧体纳米晶体时同时充当反应和分散介质。离子液体分子和M x Fe 3-x O 4 铁氧体纳米晶由于在磁场和高离子电导率下具有良好的流动性导电铁磁体已成功用作交流电路中的电解质。通过移动永磁体直接控制电路的打开或闭合状态,以调节铁磁流体的位置,因此,导致四个指示黄色发光二极管处于“关”或“开”状态。这些结果表明,导电铁磁流体成功地起到了“磁性开关”的作用。

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