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首页> 外文期刊>Nanotechnology >Successful synthesis and thermal stability of immiscible metal Au-Rh, Au-Ir and Au-Ir-Rh nanoalloys
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Successful synthesis and thermal stability of immiscible metal Au-Rh, Au-Ir and Au-Ir-Rh nanoalloys

机译:不混溶的金属Au-Rh,Au-IR和Au-Ir-Rh Nanoolys的成功合成和热稳定性

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We successfully prepared face-centred cubic nanoalloys in systems of Au-Ir, Au-Rh and Au-Ir-Rh, with large bulk miscibility gaps, in one-run reactions under thermal decomposition of specially synthesised single-source precursors, namely, [AuEn(2)][Ir(NO2)(6)], [AuEn(2)][Ir (NO2)(6)](x)[Rh(NO2)(6)](1-x). and [AuEn(2)][Rh(NO2)(6)]. The precursors employed contain all desired metals 'mixed' at the atomic level, thus providing significant advantages for obtaining alloys. The observations using high-resolution transmission electron microscopy show that the nanoalloy structures are composed of well-dispersed aggregates of crystalline domains with a mean size of 5 +/- 3 nm. Energy dispersive x-ray spectroscopy and x-ray powder diffraction (XRD) measurements confirm the formation of AuIr, AuRh, AuIr0.75Rh0.25, AuIr0.50Rh0.50 and AuIr0.25Rh0.75 metastable solid solutions. In situ high-temperature synchrotron XRD (HTXRD) was used to study the formation mechanism of nanoalloys. The observed transformations are described by the 'conversion chemistry' mechanism characterised by the primary development of particles comprising atoms of only one type, followed by a chemical reaction resulting in the final formation of a nanoalloy. The obtained metastable nanoalloys exhibit essential thermal stability. Exposure to 180 degrees C for 30 h does not cause any dealloying process.
机译:我们在AU-IR,AU-RH和AU-IR-RH的系统中成功地制备了脸部中心的立方纳米铝,具有大的散装混溶性间隙,在特殊合成的单源前体的热分解下的一次运行反应中,即[ Auen(2)] [IR(NO2)(6)],[IR(NO2)(6)](x)[RH(NO2)(6)](1-x)。 [Auen(2)] [RH(NO2)(6)]。所用前体含有原子水平的所有所需的金属“混合”,从而提供了获得合金的显着优点。使用高分辨率透射电子显微镜的观察结果表明纳米铝结构由晶体畴的良好分散的聚集体构成,均匀尺寸为5 +/- 3nm。能量分散X射线光谱和X射线粉末衍射(XRD)测量结果证实了Auir,Aurh,Auir0.75RH0.25,Auir0.50RH0.50和Auir0.25RH0.75亚稳固溶体的形成。原位高温同步XRD(HTXRD)用于研究纳米合金的形成机制。所观察到的转化由“转化化学”机制描述,其特征在于仅包含一种类型的原子的颗粒的主要发育,其次是化学反应,导致纳米拿合金的最终形成。所得稳定纳米合金具有本质的热稳定性。暴露于180℃,30小时不会导致任何易用的过程。

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