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Low temperature alloying of Cu and Ni nanoparticles formed within thermally evaporated fatty acid films

机译:在热蒸发脂肪酸膜中形成的Cu和Ni纳米粒子的低温合金化

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摘要

The low temperature alloying of copper and nickel nanoparticles synthesized in a fatty acid film by a novel ion-entrapment process is described. Nanoparticles of copper and nickel were grown in thermally evaporatd stearic acid films by immersion of the film sequentially in solutions containing Cu~(2+) ions and Ni~(2+) ions followed by their in-situ reduction at each stage. Entrapment of Cu~(2+) and Ni~(2+) ions in the stearic acid film occurs by selective electrostatic binding with carboxylate ions in the fatty acid matrix. Thermal treatment of the stearic acid-(Cu + Ni) nanocomposite film at 100 deg C resulted in the formation of a Cu-Ni alloy. The process of Cu~(2+) and Ni~(2+) ion incorporation in the stearic acid matrix and synthesis of the Cu-Ni alloy were followed by quartz crystal microgravimetry (QCM), Fourier transform infrared (FTIR) spectroscopy, transmission electron microscopy (TEM) and X-ray diffraction (XRD).
机译:描述了通过新颖的离子包裹法在脂肪酸膜中合成的铜和镍纳米粒子的低温合金化。通过将膜顺序浸入含有Cu〜(2+)离子和Ni〜(2+)离子的溶液中,然后在每个阶段进行原位还原,将铜和镍的纳米颗粒生长在热蒸发的硬脂酸薄膜中。硬脂酸膜中Cu〜(2+)和Ni〜(2+)离子的捕获是通过与脂肪酸基质中的羧酸根离子选择性静电结合而发生的。硬脂酸-(Cu + Ni)纳米复合膜在100℃下进行热处理导致形成Cu-Ni合金。硬脂酸基质中Cu〜(2+)和Ni〜(2+)离子的掺入过程以及Cu-Ni合金的合成,随后通过石英晶体微重力法(QCM),傅里叶变换红外光谱(FTIR),透射电子显微镜(TEM)和X射线衍射(XRD)。

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