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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Nanostructure Synthesis at the Solid–Water Interface: Spontaneous Assembly and Chemical Transformations of Tellurium Nanorods
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Nanostructure Synthesis at the Solid–Water Interface: Spontaneous Assembly and Chemical Transformations of Tellurium Nanorods

机译:固-水界面的纳米结构合成:碲纳米棒的自发组装和化学转化

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摘要

Bottom-up synthesis offers novel routes to obtain nanostructures for nanotechnology applications. Most self-assembly processes are carried out in three dimensions (i.e. solutions); however, the large majority of nanostructure-based devices function in two dimensions (i.e. on surfaces). Accordingly, an essential and often cumbersome step in bottom-up applications involves harvesting and transferring the synthesized nanostructures from the solution onto target surfaces. We demonstrate a simple strategy for the synthesis and chemical transformation of tellurium nanorods, which is carried out directly at the solid–solution interface. The technique involves binding the nanorod precursors onto amine-functionalized surfaces, followed by in situ crystallization/oxidation. We show that the surface-anchored tellurium nanorods can be further transformed in situ into Ag_2Te, Cu_2Te, and SERS-active Au–Te nanorods. This new approach offers a way to construct functional nanostructures directly on surfaces.
机译:自下而上的合成为纳米技术应用提供了获得纳米结构的新颖途径。大多数自组装过程都是在三个方面进行的(即解决方案)。然而,绝大多数基于纳米结构的器件在二维上(即在表面上)起作用。因此,在自下而上的应用中,必不可少且通常很麻烦的步骤涉及从溶液中收集和转移合成的纳米结构并将其转移到目标表面上。我们展示了一种碲金属纳米棒的合成和化学转化的简单策略,该策略直接在固溶界面上进行。该技术涉及将纳米棒前体结合到胺官能化的表面上,然后进行原位结晶/氧化。我们表明,表面固定的碲纳米棒可以进一步原位转化为Ag_2Te,Cu_2Te和具有SERS活性的Au-Te纳米棒。这种新方法提供了一种直接在表面上构建功能纳米结构的方法。

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