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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Gold Nanooctahedra with Tunable Size and Microfluidic-Induced 3D Assembly for Highly Uniform SERS-Active Supercrystals
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Gold Nanooctahedra with Tunable Size and Microfluidic-Induced 3D Assembly for Highly Uniform SERS-Active Supercrystals

机译:金纳米八面体具有可调的大小和微流体诱导的3D组装,用于高度均匀的SERS活性超晶体

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摘要

Shape-controlled synthesis of uniform noble metal nanoparticles (NPs) is crucial for the development of future plasmonic devices. The use of nanocrystals with well-defined morphologies and crystallinity as seed particles is expected to provide excellent shape control and monodispersity. We report the aqueous-based seed-mediated growth of monodisperse gold octahedra with wide range of sizes (50-150 mn in side length) by reducing different amounts of HAuCl4 on preformed single crystalline gold nanorods using butenoic acid as reducing agent. Butenoic acid plays a key role as a mild reducing agent as well as favoring the thermodynamic control of the reaction. The uniformity of the as-prepared Au octahedra combined with the use of a microfluidic technique based on microevaporation will allow the self-assembly of octahedra into uniform 3D supercrystals. Additionally, these plasmonic substrates exhibit high and uniform SERS signals over extended areas with intensities increasing with the Au nanoparticle size.
机译:形状均匀的贵金属纳米颗粒(NPs)的形状控制合成对于未来等离激元器件的开发至关重要。具有良好形态和结晶度的纳米晶体作为种子颗粒的使用有望提供出色的形状控制和单分散性。我们报告了水基种子介导的单分散金八面体的生长,其大小范围广(边长为50-150百万),通过使用丁烯酸作为还原剂减少预制单晶金纳米棒上不同量的HAuCl4的量。丁酸作为温和的还原剂以及促进反应的热力学控制起着关键作用。所制备的Au八面体的均匀性与基于微蒸发的微流技术的结合使用将使八面体自组装成均匀的3D超晶。另外,这些等离子体衬底在扩展区域上显示出高且均匀的SERS信号,其强度随Au纳米颗粒尺寸的增加而增加。

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