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Phase Transformations of Alloyed and Core-shell Metallic Nanoparticles for Interconnect Applications

机译:用于互连应用的合金和核 - 壳金属纳米粒子的相变

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In this study, the phase evolution upon heating of thiol-protected NPs of gold, silver and their alloys with various Au/Ag ratios (3:1, 1:1, and 1:3), as well as the phase transitions and oxidation of copper and copper-silver core shell NPs, are monitored by synchrotron radiation XRD. The interactions between ligands and surface atoms of NPs, and their influence on the coalescence and related properties will be reported. The coalescence of thiol-protected AuAg alloy nanoparticle deposits strongly depends on the rivalry between the thermodynamic and kinetic factors, which are respectively due to alloying effect and the ligand/surface atom interactions. With respect to the Cu@Ag nanoparticles, the formation temperatures of both the CuO and Cu_2O were higher than those of pure Cu nanoparticles with similar size by at least 150°C, due to the protection by thin Ag shell. After being heated to 500°C, discrete Ag nano-nodules on unprotected CuO micron-particles could be observed.
机译:在该研究中,在加热硫醇保护NPS的金,银及其合金中的相展型,具有各种Au / Ag比(3:1,1:1和1:3)以及相变和氧化通过同步辐射XRD监测铜和铜银芯壳NPS。报道,NPS的配体和表面原子之间的相互作用及其对聚结和相关性质的影响。受硫醇保护的AuAg合金纳米粒子沉积物的聚结基本上取决于热力学和动力学因子之间的竞争,其分别是由于合金化效应和配体/表面原子相互作用。关于Cu @ Ag纳米颗粒,CUO和Cu_2O的形成温度高于薄Ag壳保护的纯Cu纳米颗粒的纯Cu纳米颗粒,其具有相似的尺寸,由于薄Ag壳保护。在加热至500℃后,可以观察到未受保护的CuO微颗粒上的离散Ag纳米结节。

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