Surface Technology Group, Korea Institute of Industrial Technology (KITECH), Incheon, 21999, Republic of Korea.
R&D Center, Speclipse Inc, Gyeonggi-do, Seongnam-si, 13461, Republic of Korea.
Mikrochim Acta. 2022 Jul 25;189(8):288. doi: 10.1007/s00604-022-05391-6.
A controllable method for fabricating flexible surface-enhanced Raman scattering (SERS) substrates is demonstrated by depositing silver onto a flexible nanopillar array film. The flexible nanopillar array film was cost-effectively prepared by replicating an anodic aluminum oxide (AAO) template with UV-curable polyurethane acrylate (PUA) over a large area. Then, the deposition of silver was done by an Ar-assisted thermal evaporation. In the deposition process, the partial pressure of Ar was optimized because it has a significant influence on the SERS intensity through the microstructural changes of silver deposited on PUA nanopillars. In addition, the increase in the nanopillar diameter and height enhanced the SERS intensity obtained at 785-nm excitation because of the increased number of hot spots. However, the agglomeration of Ag-deposited nanopillars, which is caused by high aspect ratios, negatively affected the SERS performance in terms of intensity and standard deviation. The optimized Ag-deposited nanopillar array film with nanopillar diameters and heights of 80 nm and 200 nm exhibited excellent SERS sensitivity and signal reproducibility with stable mechanical flexibility. For application in food and biomedical analysis, it was used for detecting saccharin and peptide and showed a good linear relationship between the SERS intensity and concentration. These findings demonstrate the suitability of our method for the controllable fabrication and optimization of flexible SERS substrates with high sensitivity and reproducibility.
通过在柔性纳米柱阵列薄膜上沉积银,展示了一种可控的制备柔性表面增强拉曼散射(SERS)基底的方法。柔性纳米柱阵列薄膜是通过大面积复制带有紫外光固化聚氨酯丙烯酸酯(PUA)的阳极氧化铝(AAO)模板来经济有效地制备的。然后,通过 Ar 辅助热蒸发进行银沉积。在沉积过程中,优化了 Ar 的分压,因为它通过沉积在 PUA 纳米柱上的银的微观结构变化对 SERS 强度有显著影响。此外,纳米柱直径和高度的增加增加了热点的数量,从而提高了在 785nm 激发下获得的 SERS 强度。然而,由于高纵横比,Ag 沉积纳米柱的团聚会对强度和标准偏差的 SERS 性能产生负面影响。具有 80nm 和 200nm 纳米柱直径和高度的优化 Ag 沉积纳米柱阵列薄膜表现出优异的 SERS 灵敏度和信号重现性,具有稳定的机械柔韧性。为了在食品和生物医学分析中的应用,它被用于检测糖精和肽,并表现出 SERS 强度与浓度之间的良好线性关系。这些发现表明,我们的方法适用于可控制备和优化具有高灵敏度和重现性的柔性 SERS 基底。