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Tuning Localized Surface Plasmon Resonance Wavelengths of Silver Nanoparticles by Mechanical Deformation

机译:通过机械变形调谐银纳米粒子的局部表面等离子体共振波长。

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摘要

We describe a simple technique to alter the shape of silver nanoparticles (AgNPs) by rolling a glass tube over them to mechanically compress them. The resulting shape change in turn induces a red-shift in the localized surface plasmon resonance (LSPR) scattering spectrum and exposes new surface area. The flattened particles were characterized by optical and electron microscopy, single nanoparticle scattering spectroscopy, and surface enhanced Raman spectroscopy (SERS). AFM and SEM images show that the AgNPs deform into discs; increasing the applied load from 0 to 100 N increases the AgNP diameter and decreases the height. This deformation caused a dramatic red shift in the nanoparticle scattering spectrum and also generated new surface area to which thiolated molecules could attach as evident from SERS measurements. The simple technique employed here requires no lithographic templates and has potential for rapid, reproducible, inexpensive and scalable tuning of nanoparticle shape, surface area, and resonance while preserving particle volume.
机译:我们描述了一种简单的技术,可通过在玻璃纳米管上滚动玻璃管以机械压缩它们的方式来改变其形状。所产生的形状变化继而在局部表面等离振子共振(LSPR)散射光谱中引起红移并暴露出新的表面积。通过光学和电子显微镜,单纳米颗粒散射光谱和表面增强拉曼光谱(SERS)表征扁平颗粒。 AFM和SEM图像显示,AgNP变形为盘状。将施加的载荷从0 N增加到100 N会增加AgNP直径并降低高度。这种变形在纳米粒子的散射光谱中引起了巨大的红移,并且还产生了新的表面积,硫醇化分子可以附着在该表面积上,这从SERS测量中可以明显看出。这里采用的简单技术不需要光刻模板,并且具有在保留颗粒体积的同时快速,可重现,廉价且可扩展地调整纳米颗粒形状,表面积和共振的潜力。

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