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Characterization and Optimization of Novel Surface-Enhanced Raman Scattering (SERS)-based Nanoimaging Probes for Chemical Imaging

机译:新型基于表面增强拉曼散射(SERS)的化学成像纳米成像探针的表征和优化

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We have developed a novel class of surface-enhanced Raman scattering (SERS)-based nanoimaging probes for chemical imaging with nanometer scale spatial resolution. Using these SERS nanoimaging probes it is possible to differentiate between different chemical components within the sample under analysis. These SERS nanoimaging probes are fabricated from coherent fiber optic imaging bundles composed of 30,000 individual image transmission elements. Using a specially programmed micropipette puller, the individual fiber elements are uniformly heated and pulled, creating a tapered bundle with a flat tip. In order to create the SERS active surface, the tapered end of the fiber bundle is roughened on the "molecular scale" via chemical etching, and is then over-coated with silver in a controlled manner via vapor deposition in a vacuum evaporator. Following etching, six regularly spaced peaks are produced surrounding each of the individual image transmission elements of the bundle, and it is these peaks onto which the metal over-layer is deposited. Due to the high degree of uniformity in the surface of these tapered and etched tips, these SERS nanoimaging probes exhibit significantly greater reproducibility than SERS substrates fabricated through similar silver film over nanostructure fabrication processes. Characterization and optimization of these SERS nanoimaging probes using SERS active chemicals is discussed.
机译:我们已经开发了一种新型的基于表面增强拉曼散射(SERS)的纳米成像探针,用于具有纳米级空间分辨率的化学成像。使用这些SERS纳米成像探针,可以区分所分析样品中的不同化学成分。这些SERS纳米成像探头由相干的光纤成像束制成,该束由30,000个单独的图像传输元素组成。使用专门编程的微量移液器拉拔器,将各个纤维元件均匀加热并拉出,从而形成带有平头的锥形束。为了产生SERS活性表面,通过化学蚀刻在“分子尺度”上使纤维束的锥形端变粗糙,然后通过在真空蒸发器中的气相沉积以受控的方式用银进行过度涂覆。在蚀刻之后,围绕束的每个单独的图像透射元件产生六个规则间隔的峰,并且正是这些峰在其上沉积了金属覆盖层。由于这些锥形尖端和蚀刻尖端的表面高度均匀,因此这些SERS纳米成像探针比通过纳米结构制造工艺通过类似银膜制成的SERS基板具有更高的再现性。讨论了使用SERS活性化学品对这些SERS纳米成像探针进行表征和优化。

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