Department of Information Communication Convergence Technology, Soongsil University, Seoul, 06978, Republic of Korea.
Department of Chemistry, Soongsil University, Seoul, 06978, Republic of Korea.
J Hazard Mater. 2021 Jan 15;402:123499. doi: 10.1016/j.jhazmat.2020.123499. Epub 2020 Jul 16.
We prepared novel Raman substrates for the sensitive detection of submicron-sized plastic spheres in water. Anisotropic nanostar dimer-embedded nanopore substrates were prepared for the efficient identification of submicron-sized plastic spheres by providing internal hot spots of electromagnetic field enhancements at the tips of nanoparticles. Silver-coated gold nanostars (AuNSs@Ag) were inserted into anodized aluminum oxide (AAO) nanopores for enhanced microplastic (MP) detection. We found that surface-enhanced Raman scattering (SERS) substrates of AuNSs@Ag@AAO yielded stronger signals at the same weight percentages for polystyrene MP particles with diameters as small as 0.4 μm, whereas such behaviors could not be observed for larger MPs (diameters of 0.8 μm, 2.3 μm, and 4.8 μm). The detection limit of the submicrometer-sized 0.4 μm in our Raman measurements were estimated to be 0.005% (∼0.05 mg/g =50 ppm) along with a fast detection time of only a few min without any sample pretreatments. Our nano-sized dimensional matching substrates may provide a useful tool for the application of SERS substrates for submicrometer MP pollutants in water.
我们制备了新型的拉曼基底,用于在水中对亚微米级塑料球进行灵敏检测。各向异性纳米星二聚体嵌入纳米孔基底通过在纳米颗粒的尖端提供电磁场增强的内部热点,可有效识别亚微米级塑料球。将镀银金纳米星(AuNSs@Ag)插入到氧化铝纳米孔中,用于增强微塑料(MP)检测。我们发现,在相同的重量百分比下,AuNSs@Ag@AAO 表面增强拉曼散射(SERS)基底对直径小至 0.4μm 的聚苯乙烯 MP 颗粒产生的信号更强,而对于更大的 MPs(直径为 0.8μm、2.3μm 和 4.8μm)则没有观察到这种行为。在我们的拉曼测量中,对亚微米级 0.4μm 的检测限估计为 0.005%(约 0.05mg/g=50ppm),检测时间非常快,仅需几分钟,且无需任何样品预处理。我们的纳米级尺寸匹配基底可为 SERS 基底在水中亚微米级 MP 污染物的应用提供有用的工具。