SERS Sensing Using Graphene-Covered Silver Nanoparticles and Metamaterials for the Detection of Thiram in Soil

石墨烯 罗丹明6G 材料科学 等离子体子 拉曼光谱 纳米技术 福瑞姆 表面等离子共振 光电子学 超材料 激发态 银纳米粒子 纳米颗粒 分子 化学 光学 有机化学 生物 物理 杀虫剂 核物理学 农学
作者
Muhammad Shafi,Pengyi Duan,Wenying Liu,Wenjie Zhang,Can Zhang,Xiaoxuan Hu,Zhipeng Zha,Runcheng Liu,Cong Liu,Shouzhen Jiang,Baoyuan Man,Mei Liu
出处
期刊:Langmuir [American Chemical Society]
卷期号:38 (51): 16183-16193 被引量:10
标识
DOI:10.1021/acs.langmuir.2c02941
摘要

Multilayer hyperbolic metamaterial (HMM)-based SERS substrates have received special consideration because they accommodate various propagation modes such as surface plasmonic polaritons (SPP). However, the SPP modes are difficult to generate in HMM due to their weak electric field enhancement. In this article, we designed novel SERS substrates consisting of graphene-covered AgNPs and HMM. The graphene-covered AgNPs work as an external coupling structure for hyperbolic metamaterials due to this structure exhibiting significant plasmonic effects as well as unique optical features. The localized surface plasmonic resonance (LSPR) of the graphene-covered AgNPs excited the SPP and thus formed a strong hot spot zone in the nanogap area of the graphene. The Raman experiment was performed using rhodamine 6G (R6G) and crystal violet (CV), which showed high stability and a maximum enhancement factor of 2.12 × 108. The COMSOL simulation further clarified that enhanced SERS performance was due to the presence of monolayer graphene and provided an atomically flat surface for organic molecules in a more controllable manner. Interestingly, the proposed SERS structure carries out quantitative detection of thiram in soil and can satisfy the basic environmental need for pesticide residue in the soil.
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