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首页> 外文期刊>ACS nano >Preferential outward diffusion of Cu during unconventional galvanic replacement reactions between HAuCl_4 and surface-limited Cu nanocrystals
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Preferential outward diffusion of Cu during unconventional galvanic replacement reactions between HAuCl_4 and surface-limited Cu nanocrystals

机译:HAuCl_4与表面受限的Cu纳米晶体之间非常规的电化学置换反应过程中Cu的优先向外扩散

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摘要

Metal diffusion in nanoscale materials is of great interest, yet the detailed kinetic behavior of such diffusion remains elusive. We observe direction-controlled Cu diffusion during unconventional galvanic replacement reactions between surface-limited Cu nanocrystals (NCs) and HAuCl_4. Using presynthesized Cu-Cu_(1.81)S hetero-oligomer and Cu-Cu _2S heterodimer NCs as templates and reactants, the controlled addition of HAuCl_4 leads to the preferential outward diffusion of Cu, visualized by the formation of single-crystalline and straight, or polycrystalline and kinked, CuAu nanowires, respectively. The time-dependent growth of these nanowires enables determination of nanoscale diffusion coefficients of Cu during these processes, for the first time.
机译:纳米材料中的金属扩散引起人们极大的兴趣,但是这种扩散的详细动力学行为仍然难以捉摸。我们观察到在表面受限的铜纳米晶体(NCs)和HAuCl_4之间进行非常规的电化学置换反应期间,方向受控的Cu扩散。使用预合成的Cu-Cu_(1.81)S杂聚物和Cu-Cu _2S异二聚体NCs作为模板和反应物,HAuCl_4的受控添加导致Cu的优先向外扩散,通过形成单晶和直链可见,或多晶和扭结的CuAu纳米线。这些纳米线随时间的增长使得首次能够确定这些过程中Cu的纳米级扩散系数。

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