Fang Ziqing, Dong Jun, Fan Yimeng, Li Chenlu, Han Qingyan, Zhang Chengyun, Zhu Lipeng, Yan Xuewen, Qi Jianxia, Gao Wei
School of Electronic Engineering, Xi'an University of Posts and Telecommunications, Xi'an 710121, China.
School of Science, Xi'an University of Posts and Telecommunications, Xi'an 710121, China.
ACS Omega. 2025 May 2;10(18):18764-18774. doi: 10.1021/acsomega.5c00417. eCollection 2025 May 13.
Surface-enhanced Raman scattering (SERS) has become an advanced spectroscopic analysis method in the fields of chemistry, biomedical sensing, and imaging, owing to its excellent vibrational signal recognition and sensitivity for single-molecule detection. The effectiveness of SERS technology relies on the development of high-performance substrates, which must possess high sensitivity, uniformity, and repeatability. In this study, the enhanced substrates with high Raman activity were successfully prepared by adopting the three-phase self-assembly method to assemble gold nanorods (AuNRs) into nanopores of ultrathin porous alumina (AAO) films. By precisely controlling the pore size of AAO and the dimensions of AuNRs, the ability of the substrates and the Raman detection limits are enhanced significantly. Probe molecules, including Rhodamine 6G (R6G), Crystal Violet (CV), and Aspartame (APM), were selected to test the substrates sensitivity and uniformity, with detection limits of 10, 10 M, and 7.8 mg/L, respectively. Random sampling was conducted on the substrate surface to analyze the spectral characteristics of the characteristic peaks of R6G and CV molecules, and the relative standard deviations (RSD) were 4.3 and 3.18% at characteristic peaks 612 and 1619 cm, respectively, demonstrating the enhanced uniformity of the prepared substrates. This research indicates that assembling AuNRs onto AAO substrates results in significant Raman activity, providing a more reliable platform for the application of SERS technology.
表面增强拉曼散射(SERS)由于其出色的振动信号识别能力和对单分子检测的灵敏度,已成为化学、生物医学传感和成像领域的一种先进光谱分析方法。SERS技术的有效性依赖于高性能基底的开发,这种基底必须具备高灵敏度、均匀性和可重复性。在本研究中,通过采用三相自组装方法将金纳米棒(AuNRs)组装到超薄多孔氧化铝(AAO)膜的纳米孔中,成功制备了具有高拉曼活性的增强基底。通过精确控制AAO的孔径和AuNRs的尺寸,基底的性能和拉曼检测限得到了显著提高。选择了包括罗丹明6G(R6G)、结晶紫(CV)和阿斯巴甜(APM)在内的探针分子来测试基底的灵敏度和均匀性,检测限分别为10、10 M和7.8 mg/L。在基底表面进行随机采样,分析R6G和CV分子特征峰的光谱特性,在特征峰612和1619 cm处的相对标准偏差(RSD)分别为4.3%和3.18%,证明了所制备基底的均匀性得到了增强。本研究表明,将AuNRs组装到AAO基底上可产生显著的拉曼活性,为SERS技术的应用提供了一个更可靠的平台。