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Low-Cost Disposable Flexible and Highly Reproducible Screen Printed SERS Substrates for the Detection of Various Chemicals

机译:低成本一次性灵活且可重复生产的丝网印刷SERS基板用于检测各种化学物质

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摘要

Ideal SERS substrates for sensing applications should exhibit strong signal enhancement, generate a reproducible and uniform response, and should be able to fabricate in large-scale and low-cost. Herein, we demonstrate low-cost, highly sensitive, disposable and reproducible SERS substrates by means of screen printing Ag nanoparticles (NPs) on a plastic PET (Polyethylene terephthalate) substrates. While there are many complex methods for the fabrication of SERS substrates, screen printing is suitable for large-area fabrication and overcomes the uneven radial distribution. Using as-printed Ag substrates as the SERS platform, detection of various commonly known chemicals have been done. The SERS detection limit of Rhodamine 6G (R6G) is higher than the concentration of 1 × 10−10 M. The relative standard deviation (RSD) value for 784 points on the detection of R6G and Malachite green (MG) is less than 20% revealing a homogeneous SERS distribution and high reproducibility. Moreover, melamine (MA) is detected in fresh liquid-milk without additional pretreatment, which may accelerate the application of rapid on-line detection of MA in liquid milk. Our screen printing method highlights the use of large-scale printing strategies for the fabrication of well-defined functional nanostructures with applications well beyond the field of SERS sensing.
机译:用于传感应用的理想SERS基板应表现出强大的信号增强能力,产生可再现且均匀的响应,并应能够大规模且低成本地制造。本文中,我们通过在塑料PET(聚对苯二甲酸乙二酯)基板上丝网印刷Ag纳米粒子(NP)展示了低成本,高灵敏度,一次性和可再现的SERS基板。尽管有许多制造SERS基板的复杂方法,但丝网印刷适合于大面积制造,并且克服了径向分布不均的问题。使用印刷后的Ag基板作为SERS平台,已经完成了对各种常见化学物质的检测。罗丹明6G(R6G)的SERS检出限高于1×10 −10 M的浓度。检测R6G和孔雀石绿时784点的相对标准偏差(RSD)值( MG)低于20%,表明SERS分布均匀且重现性高。此外,无需额外的预处理就可以在新鲜的液态奶中检测到三聚氰胺(MA),这可以加快在液态奶中快速在线检测MA的应用。我们的丝网印刷方法强调了使用大规模印刷策略来制造轮廓分明的功能纳米结构,其应用远远超出了SERS传感领域。

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