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首页> 外文期刊>Nanoscale >Tunable orientation of two-dimensional assembled Au octahedron superlattices in polymer films as flexible SERS substrates
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Tunable orientation of two-dimensional assembled Au octahedron superlattices in polymer films as flexible SERS substrates

机译:二维组装Au八面体超晶格在聚合物薄膜中作为柔性SERS衬底的可调取向

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Anisotropic nanoparticles have been widely used as building blocks for preparing surface-enhanced Raman spectroscopy (SERS) substrates. However, tailoring the SERS activity at the self-assembly level through the anisotropic nanoparticle orientation is a big challenge, mainly due to the lack of simple assembly methods. In the present work, we report an air–water interface mediated co-assembly (AWIMCoA) strategy to prepare flexible 2D superlattices of Au octahedra with tunable orientations. We have demonstrated that Au octahedra can self-assemble into face-up, edge-up and vertex-up orientations on changing the surface wettability of Au octahedra, which determines the interparticle anisotropic interactions and the interaction between Au octahedra and the poly(styrene-ethylene-butylene-styrene) (SEBS) nanomembrane. The effect of assembly orientation on the SERS performance of 2D superlattices has been studied through correlated SEM characterization and SERS mapping. Among all the orientational modes, flexible 2D superlattices with the vertex-up orientation show the highest enhancement performance and uniformity, which is further demonstrated by theoretical simulation. Partially embedded 2D superlattices in the SEBS nanomembrane are robust to remove the surface ligands without breaking the whole nanostructure. This post-treatment process boosts the SERS performance of the 2D superlattice with the edge-up orientation by forming fused nanostructures among neighboring Au octahedra. We expect that the co-assembly method will be widely applied in the preparation of reusable and high-performance SERS substrates for broad application.
机译:各向异性纳米粒子已被广泛使用准备表面增强的构建块拉曼光谱(ser)基质。在自组装裁剪ser活动通过各向异性纳米级别定位是一个很大的挑战,主要是由于缺少简单的组装方法。工作中,我们报告一个空气界面介导co-assembly (AWIMCoA)策略准备灵活的非盟正八面体的2 d超晶格可调的方向。非盟正八面体可以自组装成平躺着,微升和vertex-up方向改变非盟正八面体的表面润湿性能,决定了粒子间的各向异性相互作用和非盟之间的互动正八面体,保利(styrene-ethylene-butylene-styrene)(实用)nanomembrane。在2 d超晶格的ser性能通过相关的扫描电镜研究描述和ser映射。定向排列模式,灵活的2 d超晶格vertex-up取向显示最高的增强性能和一致性,这是进一步证明了理论模拟。部分嵌入2 d超晶格的实用nanomembrane健壮的去除表面配体在不破坏整个纳米结构。后处理过程增强了爵士性能的2 d超晶格微升取向,形成融合纳米结构中相邻的非盟正八面体。希望co-assembly方法将广泛在可重用的制备和应用高性能ser广泛的底物应用程序。

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