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Effect of Ag Templates on the Formation of Au-Ag Hollow/Core-Shell Nanostructures

机译:Ag模板对Au-Ag空心/核壳纳米结构形成的影响

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摘要

Au-Ag alloy nanostructures with various shapes were synthesized using a successive reduction method in this study. By means of galvanic replacement, twined Ag nanoparticles (NPs) and single-crystalline Ag nanowires (NWs) were adopted as templates, respectively, and alloyed with the same amount of Au+ ions. High angle annular dark field-scanning TEM (HAADF-STEM) images observed from different rotation angles confirm that Ag NPs turned into AuAg alloy rings with an Au/Ag ratio of 1. The shifts of surface plasmon resonance and chemical composition reveal the evolution of the alloy ring formation. On the other hand, single-crystalline Ag NWs became Ag@AuAg core-shell wires instead of hollow nanostructure through a process of galvanic replacement. It is proposed that in addition to the ratio of Ag templates and Au ion additives, the twin boundaries of the Ag templates were the dominating factor causing hollow alloy nanostructures.
机译:本研究采用连续还原法合成了各种形状的Au-Ag合金纳米结构。通过电流置换,分别采用孪生Ag纳米颗粒(NPs)和单晶Ag纳米线(NWs)作为模板,并与相同量的Au + 离子进行合金化。从不同旋转角度观察到的高角度环形暗场扫描TEM(HAADF-STEM)图像证实,Ag NPs变成Au / Ag比为1的AuAg合金环。合金环的形成。另一方面,单晶银纳米线通过电流置换过程成为Ag @ AuAg核壳线,而不是空心纳米结构。提出除了Ag模板和Au离子添加剂的比例之外,Ag模板的孪晶边界是引起空心合金纳米结构的主要因素。

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