Czerwiński Mateusz, Del Olmo Martinez Ruben, Michalska-Domańska Marta
Institute of Optoelectronics, Military University of Technology, Kaliskiego 2, 00-908 Warsaw, Poland.
Materials (Basel). 2023 Aug 19;16(16):5696. doi: 10.3390/ma16165696.
The formation of nanostructured anodic titanium oxide (ATO) layers was explored on pure titanium by conventional anodizing under two different operating conditions to form nanotube and nanopore morphologies. The ATO layers were successfully developed and showed optimal structural integrity after the annealing process conducted in the air atmosphere at 450 °C. The ATO nanopore film was thinner (1.2 +/- 0.3 μm) than the ATO nanotube layer (3.3 +/- 0.6 μm). Differences in internal pore diameter were also noticeable, i.e., 88 +/- 9 nm and 64 +/- 7 nm for ATO nanopore and nanotube morphology, respectively. The silver deposition on ATO was successfully carried out on both ATO morphologies by silver electrodeposition and Ag colloid deposition. The most homogeneous silver deposit was prepared by Ag electrodeposition on the ATO nanopores. Therefore, these samples were selected as potential surface-enhanced Raman spectroscopy (SERS) substrate, and evaluation using pyridine (aq.) as a testing analyte was conducted. The results revealed that the most intense SERS signal was registered for nanopore ATO/Ag substrate obtained by electrodeposition of silver on ATO by 2.5 min at 1 V from 0.05M AgNO (aq.) (analytical enhancement factor, AEF ~5.3 × 10) and 0.025 M AgNO (aq.) (AEF ~2.7 × 10). The current findings reveal a low-complexity and inexpensive synthesis of efficient SERS substrates, which allows modification of the substrate morphology by selecting the parameters of the synthesis process.
通过常规阳极氧化在纯钛上探索了纳米结构阳极氧化钛(ATO)层的形成,在两种不同的操作条件下形成纳米管和纳米孔形态。ATO层成功制备,并在450℃空气气氛中进行退火处理后显示出最佳的结构完整性。ATO纳米孔膜(1.2±0.3μm)比ATO纳米管层(3.3±0.6μm)薄。内部孔径的差异也很明显,即ATO纳米孔和纳米管形态的孔径分别为88±9nm和64±7nm。通过银电沉积和银胶体沉积成功地在两种ATO形态上进行了银沉积。通过在ATO纳米孔上进行银电沉积制备了最均匀的银沉积物。因此,这些样品被选为潜在的表面增强拉曼光谱(SERS)基底,并使用吡啶(水溶液)作为测试分析物进行了评估。结果表明,通过在1V下从0.05M硝酸银(水溶液)中电沉积银2.5分钟(分析增强因子,AEF5.3×10)和0.025M硝酸银(水溶液)(AEF2.7×10)获得的纳米孔ATO/Ag基底记录到最强的SERS信号。目前的研究结果揭示了一种低复杂度且廉价的高效SERS基底合成方法,该方法允许通过选择合成过程的参数来改变基底形态。