Key Laboratory of Drug Prevention and Control Technology of Zhejiang Province Zhejiang Police College, 555 Binwen Road, Binjiang District, Hangzhou, 310053, Zhejiang Province, PR China.
Key Laboratory of Drug Control and Monitoring, National Anti-Drug Laboratory Zhejiang Regional Center, 555 Binwen Road, Binjiang District, Hangzhou, 310053, Zhejiang Province, PR China.
Environ Res. 2023 Jul 1;228:115926. doi: 10.1016/j.envres.2023.115926. Epub 2023 Apr 17.
Microplastics and nanoplastics are emerging classes of environmental contaminants that pose significant threats to human health. In particular, small nanoplastics (<1 μm) have drawn considerable attention owing to their adverse effects on human health; for example, nanoplastics have been found in the placenta and blood. However, reliable detection techniques are lacking. In this study, we developed a fast detection method that combines membrane filtration technology and surface-enhanced Raman spectroscopy (SERS), which can simultaneously enrich and detect nanoplastics with sizes as small as 20 nm. First, we synthesized spiked gold nanocrystals (Au NCs), achieving a controlled preparation of thorns ranging from 25 nm to 200 nm and regulating the number of thorns. Subsequently, mesoporous spiked Au NCs were homogeneously deposited on a glass fiber filter membrane to form an Au film as a SERS sensor. The Au-film SERS sensor achieved in-situ enrichment and sensitive SERS detection of micro/nanoplastics in water. Additionally, it eliminated sample transfer and prevented the loss of small nanoplastics. Using the Au-film SERS sensor, we detected 20 nm to 10 μm standard polystyrene (PS) microspheres with a detection limit of 0.1 mg/L. We also realized the detection of 100 nm PS nanoplastics at the 0.1 mg/L level in tap water and rainwater. This sensor provides a potential tool for rapid and susceptible on-site detection of micro/nanoplastics, especially small-sized nanoplastics.
微塑料和纳米塑料是新兴的环境污染物类别,对人类健康构成重大威胁。特别是小的纳米塑料(<1μm)由于对人类健康的不良影响而引起了相当大的关注;例如,已经在胎盘和血液中发现了纳米塑料。然而,缺乏可靠的检测技术。在这项研究中,我们开发了一种快速检测方法,该方法结合了膜过滤技术和表面增强拉曼光谱(SERS),可以同时浓缩和检测小至 20nm 的纳米塑料。首先,我们合成了刺金纳米晶体(Au NCs),实现了从 25nm 到 200nm 的刺的可控制备,并调节了刺的数量。随后,介孔刺金纳米晶体均匀地沉积在玻璃纤维滤膜上,形成 Au 膜作为 SERS 传感器。Au 膜 SERS 传感器实现了水中微/纳米塑料的原位浓缩和灵敏 SERS 检测。此外,它消除了样品转移并防止了小纳米塑料的损失。使用 Au 膜 SERS 传感器,我们以 0.1mg/L 的检测限检测了 20nm 至 10μm 的标准聚苯乙烯(PS)微球。我们还在自来水中和雨水中实现了 100nm PS 纳米塑料在 0.1mg/L 水平的检测。该传感器为快速和敏感的现场检测微/纳米塑料,特别是小尺寸的纳米塑料提供了一种潜在的工具。