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Exploring single-molecule SERS and single-nanoparticle plasmon microscopy

机译:探索单分子SERS和单纳米粒子等离子体显微镜

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In this work we perform correlated structural and optical studies of single nanoparticles as well as explore the generality of SMSERS. First, wide-field plasmon resonance microscopy is used to simultaneously determine the LSPR spectra of multiple Ag nanoprisms, whose structure is determined using TEM. Next, the structure-property relationships for well-defined and easily-controlled nanoparticle structures (e.g. monomers, dimers, and trimers) are studied using correlated TEM, LSPR, and SERS measurements of individual SERS nanotags. We present the SER spectrum of reporter molecules on a single nanotag comprised of a Au trimer. It was determined that of 40 individual nanotags, just 19 exhibited SERS. The remaining nanoparticles were established by TEM to be monomers. These results demonstrate that SERS signal is observed from individual nanotags containing a junction or hot spot. Lastly, we explore crystal violet, a triphenyl methane dye that was used in the seminal SMSERS investigations, and re-examine single-molecule sensitivity using the isotopologue approach.
机译:在这项工作中,我们对单个纳米颗粒进行了相关的结构和光学研究,并探索了SMSERS的一般性。首先,使用宽视场等离子体共振显微镜同时测定多个Ag纳米棱镜的LSPR光谱,其结构是通过TEM确定的。接下来,使用各个SERS纳米标签的相关TEM,LSPR和SERS测量,研究了定义明确且易于控制的纳米粒子结构(例如,单体,二聚体和三聚体)的结构属性关系。我们在由金三聚体组成的单个纳米标签上呈现报告分子的SER光谱。已确定在40个单独的纳米标签中,只有19个展示了SERS。剩余的纳米颗粒通过TEM确定为单体。这些结果表明,从包含连接或热点的单个纳米标签观察到SERS信号。最后,我们探索了结晶紫(一种用于SMSERS开创性研究中的三苯甲烷染料),并使用同位素同位素方法重新检查了单分子敏感性。

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