Department of Material Science and Engineering, National Tsing Hua University, Hsinchu, 30013, Taiwan.
Department of Material and Chemical Research Laboratories, Industrial Technology and Research Institute (ITRI), Hsinchu, Taiwan.
Sci Rep. 2018 Jan 11;8(1):516. doi: 10.1038/s41598-017-18967-7.
We present a three-dimensional patterned (3DP) multifunctional substrate with the functions of ultra-thin layer chromatography (UTLC) and surface enhanced Raman scattering (SERS), which simultaneously enables mixture separation, target localization and label-free detection. This multifunctional substrate is comprised of a 3DP silicon nanowires array (3DP-SiNWA), decorated with silver nano-dendrites (AgNDs) atop. The 3DP-SiNWA is fabricated by a facile photolithographic process and low-cost metal assisted chemical etching (MaCE) process. Then, the AgNDs are decorated onto 3DP-SiNWA by a wet chemical reduction process, obtaining 3DP-AgNDs@SiNWA multifunctional substrates. With various patterns designed on the substrates, the signal intensity could be maximized by the excellent confinement and concentrated effects of patterns. By using this 3DP-AgNDs@SiNWA substrate to scrutinize the mixture of two visible dyes, the individual target could be recognized and further boosted the Raman signal of target 15.42 times comparing to the un-patterned AgNDs@SiNWA substrate. Therefore, such a three-dimensional patterned multifunctional substrate empowers rapid mixture screening, and can be readily employed in practical applications for biochemical assays, food safety and other fields.
我们提出了一种具有超薄层色谱 (UTLC) 和表面增强拉曼散射 (SERS) 功能的三维图案化 (3DP) 多功能基底,可同时实现混合物分离、目标定位和无标记检测。这种多功能基底由 3DP 硅纳米线阵列 (3DP-SiNWA) 组成,表面修饰有银纳米枝晶 (AgNDs)。3DP-SiNWA 通过简便的光刻工艺和低成本的金属辅助化学刻蚀 (MaCE) 工艺制备。然后,通过湿化学还原过程将 AgNDs 修饰到 3DP-SiNWA 上,得到 3DP-AgNDs@SiNWA 多功能基底。通过在基底上设计各种图案,可以通过图案的优异限制和集中效应来最大化信号强度。通过使用这种 3DP-AgNDs@SiNWA 基底来检测两种可见染料的混合物,可以识别单个目标,并进一步将目标的拉曼信号增强 15.42 倍,与无图案的 AgNDs@SiNWA 基底相比。因此,这种三维图案化多功能基底能够实现快速混合物筛选,并可方便地应用于生化分析、食品安全和其他领域的实际应用。