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Immobilization of Cubic Silver Plasmonic Nanoparticles on TiO2 Nanotubes, Reducing the Coffee Ring Effect in Surface-Enhanced Raman Spectroscopy Applications

机译:在TiO2纳米管上固定立方银胸型纳米粒子,降低表面增强拉曼光谱应用中的咖啡环效应

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Surface-enhanced Raman spectroscopy (SERS) substrates prepared by immobilizing silver cubic nanoparticles (Ag CNPs) on titanium dioxide nanotubes (TiO_(2) NTs) were used for investigations of the “coffee ring” (CR) effect and its impact on spatial reproducibility of measured Raman signals in comparison with flat surfaces (Ti and Si) where the CR effect is usually significant. The immobilization of nanoparticles from drops, which is a very simple technique, usually does not permit a homogeneous distribution of deposited NPs because there is significant accumulation of the material at the boundary of the drying area. Our proposed SERS substrates effectively reduced the CR effect through the use of well-ordered nanostructures where a smaller number of Ag CNPs were transferred to the boundary region. It was not only the surface morphology that was important but also the physicochemical properties of TiO_(2) NTs, such as wettability. The wettability of the prepared samples was determined by measuring the static water contact angle (WCA), and the chemical composition near the boundary of the drying area was studied using Auger electron spectroscopy. The morphology of the substrates obtained was characterized using scanning electron microscopy. Our studies showed that reducing the coffee ring effect increased the spatial reproducibility of the measured SERS signal in the area of the deposited CNPs. Therefore, the platforms obtained may be very useful in commercial SERS applications.
机译:通过将银立方纳米颗粒(Ag CNP)固定在二氧化钛纳米管(TiO_(2)NTS)上制备的表面增强拉曼光谱(SERS)底物用于研究“咖啡环”(CR)效应及其对空间再现性的影响测量的拉曼信号与平坦表面(Ti和Si)相比,其中Cr效应通常是显着的。从下降中的纳米颗粒固定,这是一种非常简单的技术,通常不允许沉积NP的均匀分布,因为材料在干燥区域的边界处存在显着的积累。我们所提出的SERS基质通过使用诸如有序的纳米结构而有效地降低了CR效果,其中将较少数量的AG CNP转移到边界区域。它不仅是诸如润湿性等TiO_(2)NTS的物理化学性质的表面形态。通过测量静态水接触角(WCA)测定制备样品的润湿性,并且使用螺旋钻电子光谱研究了干燥区域边界附近的化学组成。使用扫描电子显微镜表征获得的底物的形态。我们的研究表明,减少咖啡环效果在沉积的CNPS区域中增加了测量的SERS信号的空间再现性。因此,所获得的平台可能在商业SERS应用中非常有用。

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