Sui Chaofan, Wang Kaige, Wang Shuang, Ren Junying, Bai Xiaohong, Bai Jintao
National Key Laboratory Base of Photoelectric Technology & Functional Materials Co-Sponsored by Province and Ministry, Institute of Photonics & Photon-Technology, Northwest University, Xi'an, 710069, China.
Nanoscale. 2016 Mar 21;8(11):5920-7. doi: 10.1039/c5nr06771e. Epub 2016 Feb 25.
Most of SERS applications are constricted by heterogeneous hotspots and aggregates of nanostructure, which result in low sensitivity and poor reproducibility of characteristic signals. This work intends to introduce SERS properties of a type of SERS-active substrate, Au-CuCl2-AAO, which is innovatively developed on a porous anodic alumina oxide (AAO) template. Spectral measuring results of Rhodamine 6G (R6G) on this substrate optimized by controlling morphology and gold thickness showed that enhancement factor (2.30 × 10(7)) and detection limit (10(-10) M) were both improved and represented better performance than its template AAO. Homogenous hot spots across the region of interest were achieved by scanning SERS intensity distribution for the band at 1505 cm(-1) in 5 × 5 μm(2) area. Furthermore, the promising SERS activity of the flower-patterned substrate was theoretically explained through simulation of the electromagnetic field distribution. In addition, this SERS substrate is proposed for applications within the field of chemical and biochemical analyses.
大多数表面增强拉曼光谱(SERS)应用受到异质热点和纳米结构聚集体的限制,这导致特征信号的灵敏度低且重现性差。本工作旨在介绍一种SERS活性基底Au-CuCl2-AAO的SERS特性,该基底是在多孔阳极氧化铝(AAO)模板上创新开发的。通过控制形貌和金厚度对该基底上的罗丹明6G(R6G)进行光谱测量的结果表明,增强因子(2.30×10^7)和检测限(10^-10 M)均得到改善,并且比其模板AAO表现出更好的性能。通过扫描5×5μm^2区域内1505 cm^-1处谱带的SERS强度分布,在感兴趣区域实现了均匀热点。此外,通过模拟电磁场分布从理论上解释了花形基底具有良好的SERS活性。此外,这种SERS基底被提议用于化学和生化分析领域。