Bhardwaj Keshav, Singh Khushal, Jaiswal Amit
School of Biosciences and Bioengineering, Indian Institute of Technology Mandi, Kamand, Mandi, Himachal Pradesh, 175075, India.
Analyst. 2023 Oct 5;148(20):5279-5290. doi: 10.1039/d3an00874f.
In this study, a highly sensitive and efficient surface-enhanced Raman spectroscopy (SERS) substrate was developed using Au dogbone nanorattles (Au-DBNRTs) deposited on a 3D wrinkled polymeric heat shrink film. The plasmonic structures of Au-DBNRTs, which possess a solid gold dogbone-shaped core and a thin, porous gold shell, and Au nanorod nanorattles (Au-NRNRTs), which have a rod-shaped core, were synthesized and their SERS performance was evaluated. Au-DBNRTs exhibited better Raman signal enhancement. The substrate was used to detect the pesticide thiabendazole with a limit of detection of up to 10 M. The unique optical properties and geometry of the Au-DBNRT nanoparticles, which have portruding corners in the vicinity of the metal shell, along with the shrinkage of the film after heat treatment, led to the creation of a 3D surface morphology, resulting in the generation of plasmonic electromagnetic hot spots. The fabricated substrate achieved an enhancement factor of 2.77 × 10 for BDT, and the detection limit was 10 M. The current work offers a simple, cost-effective, and sensitive SERS substrate design that has great potential for sensing and detecting trace analytes.
在本研究中,通过将金狗骨形纳米摇铃(Au-DBNRTs)沉积在三维皱纹聚合物热收缩膜上,开发了一种高灵敏度和高效的表面增强拉曼光谱(SERS)基底。合成了具有实心金狗骨形核和薄的多孔金壳的Au-DBNRTs以及具有棒状核的金纳米棒纳米摇铃(Au-NRNRTs)的等离子体结构,并评估了它们的SERS性能。Au-DBNRTs表现出更好的拉曼信号增强。该基底用于检测噻菌灵农药,检测限高达10 M。Au-DBNRT纳米颗粒独特的光学性质和几何形状,其在金属壳附近具有突出的角,以及热处理后膜的收缩,导致形成三维表面形态,从而产生等离子体电磁热点。制备的基底对BDT的增强因子为2.77×10,检测限为10 M。目前的工作提供了一种简单、经济高效且灵敏的SERS基底设计,在传感和检测痕量分析物方面具有巨大潜力。