School of Physics Science and Technology , Lingnan Normal University , Zhanjiang 524048 , People's Republic of China.
ACS Appl Mater Interfaces. 2018 Oct 17;10(41):35607-35614. doi: 10.1021/acsami.8b11713. Epub 2018 Oct 4.
Seeking for ultrasensitive and low-cost substrates is highly demandable for practical applications of surface-enhanced Raman scattering (SERS) technology. In this work, we report an ultrasensitive SERS-active substrate based on wet-chemistry-synthesized vertically aligned large-area TiO nanosheets (NSs) decorated by densely packed gold nanoparticles (Au NPs) with sub-5 nm gaps. Via a multistep successive deposition process, three-dimensional-stacked Au NPs sandwiched by a 3 nm SiO layer were assembled onto the TiO NS, enabling numerous hotspots due to the formation of both ultratiny plasmonic gaps and semiconductor/metal interfaces. Experimental results show that the fabricated substrate displays a detection limit down to 10 fM (10 M) without involving any condensation process by using the crystal violet as probe molecules. Control experiments and electromagnetic simulations indicate that the nanogaps defined by the 3 nm spacer are essential for the obtained excellent SERS performance. With its ultrasensitive detection capability, we demonstrate that the fabricated SERS substrate can be used for the trace analysis of melamine in milk.
寻求超灵敏和低成本的衬底对于表面增强拉曼散射(SERS)技术的实际应用是非常需要的。在这项工作中,我们报告了一种基于湿化学合成的垂直排列的大面积 TiO 纳米片(NSs)的超灵敏 SERS 活性衬底,这些纳米片由密集堆积的金纳米粒子(Au NPs)修饰,纳米粒子之间的间隙小于 5nm。通过多步连续沉积过程,将三明治结构的 Au NPs(中间夹有 3nm 的 SiO 层)组装到 TiO NS 上,由于形成了超微小的等离子体间隙和半导体/金属界面,从而产生了大量热点。实验结果表明,使用结晶紫作为探针分子,通过不涉及任何冷凝过程,该制备的衬底的检测极限可低至 10 fM(10 M)。对照实验和电磁模拟表明,3nm 间隔物定义的纳米间隙对于获得优异的 SERS 性能是必不可少的。凭借其超灵敏的检测能力,我们证明了所制备的 SERS 衬底可用于牛奶中三聚氰胺的痕量分析。