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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Stability and Morphology of Gold Nanoisland Arrays Generated from Layer-by-Layer Assembled Nanoparticle Multilayer Films: Effects of Heating Temperature and Particle Size
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Stability and Morphology of Gold Nanoisland Arrays Generated from Layer-by-Layer Assembled Nanoparticle Multilayer Films: Effects of Heating Temperature and Particle Size

机译:逐层组装的纳米颗粒多层薄膜产生的金纳米岛阵列的稳定性和形态:加热温度和粒度的影响

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摘要

This article reports the effects of heating temperature and composition of nanoparticle multilayer films on the morphology, stability, and optical property of gold nanoisland films prepared by the nanoparticle self-assembly/heating method. First, nanoparticle-polymer multilayer films are prepared by the layer-by-layer assembly. Nanoparticle multilayer films are then heated at temperature ranging from 500 to 625 °C in air to induce an evaporation of organic matters from the films. During the heating process, the nanoparticles on the solid surface undergo coalescence, resulting in the formation of nanostructured gold island arrays. Characterization of nanoisland films using atomic force microscopy and UV-vis spectroscopy suggests that the morphology and stability of gold island films change when different heating temperatures are applied. Stable gold nanoisland thin film arrays can only be obtained after heat treatments at or above 575 °C. In addition, the results show that the use of nanoparticles with different sizes produces nanoisland films with different morphologies. Multilayer films containing smaller gold nanoparticles tend to produce more monodisperse and smaller island nanostractures. Other variables such as capping ligands around nanoparticles and the molecular weight of polymer linkers are found to have only minimal effects on the structure of island films. The adsorption of streptavidin on the biotm-fiinctionalized nanoisland films is studied for examining the biosensing capability of nanoisland arrays.
机译:本文报道了加热温度和纳米颗粒多层膜的组成对通过纳米颗粒自组装/加热方法制备的金纳米岛膜的形貌,稳定性和光学性质的影响。首先,通过逐层组装来制备纳米粒子-聚合物多层膜。然后将纳米颗粒多层膜在空气中在500至625°C的温度下加热,以诱导有机物从膜中蒸发。在加热过程中,固体表面上的纳米颗粒会聚结,从而形成纳米结构的金岛阵列。使用原子力显微镜和紫外可见光谱对纳米岛薄膜进行表征表明,当施加不同的加热温度时,金岛薄膜的形态和稳定性会发生变化。稳定的金纳米岛薄膜阵列只能在575°C或更高温度下进行热处理后才能获得。此外,结果表明,使用不同尺寸的纳米颗粒会产生具有不同形态的纳米岛膜。包含较小金纳米颗粒的多层膜往往会产生更多的单分散性和较小的岛状纳米结构。发现其他变量(例如,围绕纳米颗粒的配位体封端和聚合物接头的分子量)对岛状膜的结构影响很小。为了研究纳米岛阵列的生物传感能力,研究了链霉亲和素在生物膜修饰的纳米岛膜上的吸附。

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