化学
桥接(联网)
聚苯乙烯
表征(材料科学)
拉曼散射
基质(化学分析)
纳米技术
棱锥(几何)
拉曼光谱
分析化学(期刊)
高光谱成像
散射
爆炸物
爆炸物探测
复矩阵
聚合物
分数(化学)
聚乙烯
光电子学
刷子
作者
Minglu Ma,Tianyu Mao,Lifang Xie,P. L. Zhang,Dayu Zhu,Wei Wang,Jilun Wang,Shaolin Yang,Yangyang Liu,Tao Wang,Qiuyue Ge,Liwu Zhang
标识
DOI:10.1021/acs.analchem.6c02099
摘要
Abstract The detection of nanoplastics smaller than 200 nm is critical because of their potential to cross biological barriers, yet it remains a significant analytical challenge in complex environmental matrices due to weak signals and matrix interference. Here, we developed an ordered silver-coated inverted pyramid array, termed the Ag-iPyramid substrate, as a reproducible surface-enhanced Raman scattering (SERS) platform for high-fidelity single-particle analysis of sub-200 nm nanoplastics. Systematic comparisons showed that Ag-iPyramid produced substantially higher signal-to-noise ratios, apparent single-particle enhancement ratios, and spectral matching scores than Au- and Cu-coated counterparts. Finite-difference time-domain simulations further showed that Ag generated the strongest local electric-field confinement within the inverted-pyramid cavity, consistent with the experimental performance ranking of Ag > Au > Cu. Beyond SERS enhancement, the Ag-iPyramid platform enabled high-quality detection of individual 100 nm polystyrene (PS) nanoplastics. When applied to real samples, the platform identified PS nanoplastics released from disposable food containers with a minimum Feret diameter of ∼140 nm and topographical heights of ∼22–45 nm. In authentic rainwater, the platform further resolved a polyethylene (PE) particle, a nylon-like nanoplastic (∼188 nm), and polyethylene-like (PE-like) particles in the sub-150 nm size range. These results demonstrate that Ag-iPyramid provides a robust strategy for the single-particle characterization of sub-200 nm plastics, bridging a crucial gap in monitoring the smallest and potentially most hazardous fraction of plastic pollution.
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