Wang Tzyy-Jiann, Barveen Nazar Riswana, Liu Zhe-Yuan, Chen Ching-Hsiang, Chou Mei-Hua
Department of Electro-Optical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
CL Technology Co., Ltd., New Taipei 24158, Taiwan.
ACS Appl Mater Interfaces. 2021 Jul 28;13(29):34910-34922. doi: 10.1021/acsami.1c08233. Epub 2021 Jul 18.
Transparent and flexible surface-enhanced Raman scattering (SERS) substrates have attracted much interest for the detection of probe molecules on the curved surfaces of real samples, but a facile route to fabricate such substrates is still lacking. Herein, we present a rationally designed, high-performance flexible SERS substrate fabricated using a simple drop and peel-off technique for the ultrasensitive detection of pesticides. The proposed SERS substrate consists of a polymethyl methacrylate (PMMA) film anchored with plasmonic silver nanoparticles (Ag NPs), which are photoreduced using chemically patterned ferroelectric templates. The photoreduced Ag NPs extracted onto the PMMA film offer strong electromagnetic enhancement and produce intensive hotspots for the effective enhancement of the Raman signal. They provide superior SERS performance for the detection of parathion (PT) and fenitrothion (FNT) at trace-level concentrations of 10 M and 10 M with excellent enhancement factors in the order of 10 and 10, respectively. Moreover, the Ag NP/PMMA SERS substrate has good spot-to-spot uniformity and batch-to-batch reproducibility with the reservation of high detection sensitivity even after the mechanical deformation of bending and torsion up to 50 cycles. The multiplex detection ability is also investigated for the simultaneous detection of PT and FNT. To ensure the practical feasibility, the in-situ, real-time detection of PT and FNT on the curved surfaces of tomato and lemon using a fiber-coupled Raman probe is performed with limits of detection of 4.24 × 10 M and 2.74 × 10 M. The proposed Ag NP/PMMA flexible SERS substrate possesses unique features, such as easy fabrication through a simple, economical, rapid process, and facilitates straightforward implementation of in-situ SERS detection on curved fruit/vegetable surfaces.
透明且灵活的表面增强拉曼散射(SERS)基底在检测真实样品曲面上的探针分子方面引起了广泛关注,但制备此类基底的简便方法仍然缺乏。在此,我们展示了一种合理设计的高性能柔性SERS基底,该基底通过简单的滴涂和剥离技术制备,用于超灵敏检测农药。所提出的SERS基底由锚定有等离子体银纳米颗粒(Ag NPs)的聚甲基丙烯酸甲酯(PMMA)薄膜组成,这些银纳米颗粒使用化学图案化的铁电模板进行光还原。提取到PMMA薄膜上的光还原Ag NPs提供了强大的电磁增强,并产生密集的热点以有效增强拉曼信号。它们在痕量浓度为10 M和10 M的对硫磷(PT)和杀螟硫磷(FNT)检测中表现出优异的SERS性能,增强因子分别约为10和10。此外,Ag NP/PMMA SERS基底具有良好的点与点之间的均匀性和批次与批次之间的重现性,即使在弯曲和扭转高达50次循环的机械变形后仍保留高检测灵敏度。还研究了其对PT和FNT的同时检测的多重检测能力。为确保实际可行性,使用光纤耦合拉曼探针在番茄和柠檬曲面上对PT和FNT进行了原位实时检测,检测限分别为4.24×10 M和2.74×10 M。所提出的Ag NP/PMMA柔性SERS基底具有独特的特点,例如通过简单、经济、快速的过程易于制备,并便于在弯曲的水果/蔬菜表面直接进行原位SERS检测。