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Design and fabrication of bimetallic plasmonic colloids through cold nanowelding

机译:设计和制造双金属电浆通过冷nanowelding胶体

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The integration of Au and Ag into nanoalloys has emerged as an intriguing strategy to further tailor and boost the plasmonic properties of optical substrates. Conventional approaches for fabricating these materials via chemical reductions of metal salts in solution suffer from some limitations, such as the possibility of retaining the original morphology of the monometallic substrate. Spontaneous nanowelding at room temperature has emerged as an alternative route to tailor Au/Ag nanomaterials. Herein, we perform a thorough study on the cold-welding process of silver nanoparticles onto gold substrates to gain a better understanding of the role of different variables in enabling the formation of well-defined bimetallic structures that retain the original gold substrate morphology. To this end, we systematically varied the size of silver nanoparticles, dimensions and geometries of gold substrates, solvent polarity and structural nature of the polymeric coating. A wide range of optical and microscopy techniques have been used to provide a complementary and detailed description of the nanowelding process. We believe this extensive study will provide valuable insights into the optimal design and engineering of bimetallic plasmonic Ag/Au structures for application in nanodevices.
机译:盟和向nanoalloys Ag)的集成进一步成为一个有趣的策略调整和提高电浆的特性光学基板。通过化学加工这些材料遭受削减金属盐的解决方案一定的局限性,如的可能性保留的原始形态单本位制的衬底。在室温下已成为一个替代选择路线裁缝Au / Ag纳米材料。执行对冷压焊一次彻底的研究银纳米粒子在金的过程底物来获得更好的理解在启用角色不同的变量定义良好的双金属结构的形成保留原来的金衬底形态。银纳米粒子的大小、尺寸和几何图形的黄金基质、溶剂极性和结构性质的聚合物涂层。广泛的光学显微镜技术被用来提供一个补充和nanowelding过程的详细描述。我们相信这广泛的研究将提供为优化设计和有价值的见解工程的双金属电浆Ag /非盟结构在nanodevices中的应用。

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