Institute of Optoelectronic Sciences, National Taiwan Ocean University, Keelung 202, Taiwan.
Nanotechnology. 2010 Jan 15;21(2):025502. doi: 10.1088/0957-4484/21/2/025502. Epub 2009 Dec 3.
We introduce a platform, comprised of silver nanoparticle decorated silica nanowires (SiONWs) dispersed on fused quartz substrates, for high sensitivity surface-enhanced Raman scattering (SERS) measurements using both frontal (through the analytes) and back-face (through the transparent substrate) excitation. Quasi-quantitative SERS performances on the specialized substrate, vis-à-vis a silver deposited bare fused quartz plate, showed: (i) the suitability of the Ag modified SiONW substrate for frontal as well as back-face excitation; (ii) a wider detection range with high sensitivity to Rhodamine 6G; and (iii) good underwater metal-oxide adhesion of the specialized substrates. Capable of surviving ultrasonic cleaning, the substrate introduced is one of the few reusable low-cost Ag-based nanostructured SERS substrates, requiring only a simple silver reload process (the silver mirror reaction).
我们介绍了一个平台,由银纳米颗粒修饰的二氧化硅纳米线(SiONWs)分散在熔融石英基底上,用于使用前向(通过分析物)和后向(通过透明基底)激发进行高灵敏度表面增强拉曼散射(SERS)测量。与镀银的裸熔融石英板相比,特殊基底上的准定量 SERS 性能表现出:(i)Ag 修饰的 SiONW 基底适用于前向和后向激发;(ii)对 Rhodamine 6G 具有更宽的检测范围和高灵敏度;(iii)特殊基底对水下金属氧化物具有良好的附着力。该基底能够在超声清洗下存活,是少数几种可重复使用的低成本基于 Ag 的纳米结构 SERS 基底之一,只需要一个简单的银再加载过程(银镜反应)。