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首页> 外文期刊>Nanoscale >Surface-enhanced Raman scattering via entrapment of colloidal plasmonic nanocrystals by laser generated microbubbles on random gold nano-islands
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Surface-enhanced Raman scattering via entrapment of colloidal plasmonic nanocrystals by laser generated microbubbles on random gold nano-islands

机译:通过截留表面增强拉曼散射胶体电浆纳米晶体的激光随机生成的微气泡在黄金nano-islands

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摘要

Surface-enhanced Raman scattering (SERS) typically requires hot-spots generated in nano-fabricated plasmonic structures. Here we report a highly versatile approach based on the use of random gold nanoisland substrates (AuNIS). Hot spots are produced through the entrapment of colloidal plasmonic nanocrystals at the interface between AuNIS and a microbubble, which is generated from the localized plasmonic absorption of a focused laser beam. The entrapment strength is strongly dependent on the shape of the microbubble, which is in turn affected by the surface wetting characteristics of the AuNIS with respect to the solvent composition. The laser power intensity required to trigger microbubble-induced SERS is as low as 200 mu W mu m(-2). Experimental results indicate that the SERS limit of detection (LOD) for molecules of 4-MBA (with -SH bonds) is 10(-12) M, R6G or RhB (without -SH bonds) is 10(-7) M. The proposed strategy has potential applications in low-cost lab-on-chip devices for the label-free detection of chemical and biological molecules.
机译:表面增强拉曼散射(ser)一般需要在nano-fabricated热点生成电浆结构。基于随机的使用通用的方法黄金nanoisland基质(AuNIS)。通过胶体的圈套电浆纳米晶体之间的接口AuNIS和微泡,这是生成的集中的局部电浆吸收激光光束。依赖于微泡的形状,反过来表面润湿的影响吗AuNIS对的特征溶剂组成。需要触发microbubble-induced爵士低至200亩Wμm(2)。表明,ser检测极限(LOD)分子的4-MBA (sh债券)10(-12)米,R6G或RhB(没有sh债券)10 m(7)拟议的战略潜力台应用于低成本的芯片实验室设备化学和label-free检测生物分子。

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