Shon Young-Seok, Shon Dayeon Judy, Truong Van, Gavia Diego J, Torrico Raul, Abate Yohannes
Department of Chemistry and Biochemistry, California State University Long Beach, 1250 Bellflower Blvd., Long Beach, CA 90840, USA.
Department of Physics and Astronomy, California State University Long Beach, 1250 Bellflower Blvd., Long Beach, CA 90840, USA.
Adv Nano Res. 2014 Feb 1;2(1):57-67. doi: 10.12989/anr.2014.2.1.057.
This article shows the coarsening behavior of nanoparticle multilayers during heat treatments which produce larger metallic nanostructures with varying shapes and sizes on glass slides. Nanoparticle multilayer films are initially constructed via the layer-by-layer self-assembly of small and monodispersed gold and/or palladium nanoparticles with different compositions (gold only, palladium only, or both gold and palladium) and assembly orders (compounding layers of gold layers over palladium layers or vice versa). Upon heating the slides at 600°C, the surface nanoparticles undergo coalescence becoming larger nanostructured metallic films. UV-Vis results show a clear reliance of the layering sequence on the optical properties of these metal films, which demonstrates an importance of the outmost (top) layers in each nanoparticle multilayer films. Topographic surface features show that the heat treatments of nanoparticle multilayer films result in the nucleation of nanoparticles and the formation of metallic cluster structures. The results confirm that different composition and layering sequence of nanoparticle multilayer films clearly affect the coalescence behavior of nanoparticles during heat treatments.
本文展示了纳米颗粒多层膜在热处理过程中的粗化行为,该过程会在载玻片上产生具有不同形状和尺寸的更大的金属纳米结构。纳米颗粒多层膜最初是通过小尺寸且单分散的金和/或钯纳米颗粒的逐层自组装构建而成,这些纳米颗粒具有不同的组成(仅金、仅钯或金和钯都有)和组装顺序(金层在钯层之上复合或反之)。在600°C加热载玻片时,表面纳米颗粒会发生聚结,形成更大的纳米结构化金属膜。紫外可见光谱结果表明,层序对这些金属膜的光学性质有明显影响,这表明每个纳米颗粒多层膜中最外层(顶层)的重要性。表面形貌特征表明,纳米颗粒多层膜的热处理会导致纳米颗粒的成核以及金属簇结构的形成。结果证实,纳米颗粒多层膜不同的组成和层序会明显影响热处理过程中纳米颗粒的聚结行为。