Flexible SERS substrate with tunable gap based on laser-induced reduction

Author:

Li Wanyi1ORCID,Xu Hankun1,Li Hongxu1,Li Yang1,Liu Jiale1,Liang Guangrui1,Chen Kemiao1,Sun Huojiao2

Affiliation:

1. College of Electronic Information Engineering, Wuxi University 1 , Wuxi 214105, Jiangsu, China

2. School of Electrical and Optoelectronic Engineering, West Anhui University 2 , Luan 237000, Anhui, China

Abstract

In order to break the limitation that the gap is fixed once it was synthesized for traditional flexible surface-enhanced Raman scattering substrate, in this work, a laser-induced reduction method was used to fabricate ordered silver nanodot arrays on flexible substrates. By using rhodamine 6G as a probe molecule, Raman characterization is carried out on the hydrogel film/silver substrate at expanded and shrunken states. The substrate shows great reproducibility, and the average relative standard deviation of the probe is 8.7%. In addition, when the hydrogel film was shrunk by 75%, the intensity at 1650 cm−1 will be enhanced by about 36 times, and the detection concentration of the R6G molecule can reach 10−7 mol/l.

Funder

Wuxi University Research Start-up Fund for Introduced Talents

The Start-up Fee for Scientific Research of High-level Talents of West Anhui University

Publisher

AIP Publishing

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