金属间化合物
亚稳态
纳米颗粒
化学
扩散
透射电子显微镜
化学物理
化学计量学
相(物质)
工作(物理)
过渡金属
相变
动能
纳米技术
材料科学
原子扩散
超短脉冲
化学工程
金属
结晶学
动力学
作者
Jiawei Huang,Zhouyang Zhang,Guangren Wang,Mingfei Li,Keyi Tong,Jiaren Yuan,Changshui Huang,Yang Chai,Linfeng Fei
摘要
Abstract The disorder–order transition of metal alloys delivers ordered intermetallic nanoparticles (NPs) as efficient and stable catalysts. However, this transition is practically challenging due to the thermodynamically low driving force and the complex kinetic competition with concurrent processes (e.g., phase separation). Here, we report a kinetic-controlled phase-capturing strategy for ordering multimetallic NPs via pulsed heating treatment. This strategy enables the rapid and universal synthesis of intermetallic NPs with varying elemental compositions (up to eight elements) and stoichiometric ratios in seconds (<10 pulses, down to 1 pulse). In situ transmission electron microscopy reveals a multistep transformation pathway, where disordered NPs premelt at the heating stage of each pulse and subsequently recrystallize toward metastable intermediate states or the final ordered structures via short-range atomic diffusion in the cooling stage. This work develops a promising concept for controllably synthesizing complex intermetallic NPs, as well as for obtaining versatile metastable structures in nanomaterials.
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