Abstract

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.

Highlights

  • 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

  • To satisfy practical requests for rapid biochemical mixture screening, we demonstrate a novel three-dimensional patterned substrate, composed of silver nano-dendrites decorated at three dimensional patterned silicon nanowire arrays (3DP-AgNDs@silicon nanowires array (SiNWA)), to enable UTLC and SERS simultaneously

  • As mentioned earlier, the designed pattern acted as the channel for UTLC development process and possessed the “confinement” effect of molecule migration

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Summary

Introduction

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. More researchers applied this technique to detect different biochemical molecules including artist dyestuffs[21], dye and toxin mixtures[22,23,24,25], pollutants in water[26], or chemical reactions[27] Among these works, Yu et al presented a paper-based SERS substrate by inkjet printing process[25]. With the precisely designed pattern, the chromatography separation efficiency was improved and stronger SERS signal was obtained

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