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Selective surface modification of free-standing polysaccharide nanosheet with microano-particles identified by structural color changes

机译:通过结构颜色变化确定的具有纳米微粒的独立多糖纳米片的选择性表面修饰

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摘要

The chemical and physical modification of a material surface is important for practical applications. In this study, we utilized the bilateral nature of a free-standing polysaccharide nanosheet as a platform for surface modification, selectively modifying the upper and lower surfaces with different sizes of latex beads. By means of a water-soluble sacrificial layer, we adsorbed latex beads with the diameter of 200 rim onto the obverse surface of the polysaccharide nanosheet as well as latex beads with that of 2 mu m onto the reverse side. The optical characteristics of the nanosheet were analyzed on the basis of 'thin film interference theory' by making stepwise increments in thickness through sequentially overlaying free-standing 30nm polysaccharide nanosheets onto a SiO2 substrate. The surface of the polysaccharide nanosheet was quite flat and smooth. Having confirmed by optical and scanning electron microscopy that we had achieved selective surface modification of the polysaccharide nanosheet with microano-latex beads, we noted a unique optical property when the nanosheet was adsorbed on the SiO2 substrate. The localization of the beads on the nanosheet surface produced structural colors in the films due to an optical interference. This selective surface modification technique will be utilized to create 'smart' nanocomposites possessing different surface functions.
机译:材料表面的化学和物理改性对于实际应用很重要。在这项研究中,我们利用独立的多糖纳米片的双边性质作为表面修饰的平台,用不同大小的乳胶珠选择性地修饰上下表面。借助于水溶性牺牲层,我们将直径为200 rim的乳胶珠吸附到多糖纳米片的正面,并将直径为2μm的乳胶珠吸附到背面。纳米片的光学特性基于“薄膜干涉理论”进行了分析,方法是通过依次将独立的30nm多糖纳米片顺序覆盖在SiO2基底上来逐步增加厚度。多糖纳米片的表面相当平坦和光滑。通过光学和扫描电子显微镜确认,我们已经实现了具有微/纳米乳胶珠的多糖纳米片的选择性表面改性,我们注意到当纳米片吸附在SiO2基底上时具有独特的光学性能。由于光学干涉,珠在纳米片表面上的定位在膜中产生了结构色。这种选择性的表面改性技术将被用于制造具有不同表面功能的“智能”纳米复合材料。

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