Carreón Rafael Villamil, Rodríguez-Hernández Ana G, Serrano de la Rosa Laura Elvira, Gervacio-Arciniega José Juan, Krishnan Siva Kumar
Facultad de Ciencias Físico Matemáticas, Benemérita Universidad Autónoma de Puebla, Av. San Claudio y Av. 18 sur., Puebla, Pue., C.P. 72570, México.
CONAHCyT-Centro de Nanociencias and Nanotecnología, Universidad Nacional Autónoma de México, Km 107 Carretera Tijuana-Ensenada, Ensenada, Baja California C.P. 22800, México.
ACS Sens. 2025 Mar 28;10(3):1747-1755. doi: 10.1021/acssensors.4c02081. Epub 2024 Oct 31.
The escalating crisis of nanoplastic pollution in water and food products demands the development of novel methodologies for detection and recycling. Despite various techniques available, surface-enhanced Raman scattering (SERS) is emerging as a highly efficient technique for the trace detection of micro/nanoplastics. However, the development of highly reproducible and stable, flexible SERS substrates that can be used for sensitive detection in environmental medium remains a challenge. Here, we report a fabrication of large-area, three-dimensional (3D), and highly flexible SERS substrate based on porous dendritic Au films onto a flexible indium tin oxide (ITO) substrate via facile, thermal evaporation of Au over the vacuum-compatible deep eutectic solvent (DES)-coated glass substrate and subsequent direct transfer process. The as-fabricated 3D dendritic Au/ITO flexible substrates can be used for ultrasensitive SERS detection of crystal violet (CV) as probe analyte molecules with the limit of detection (LOD) as low as 6.4 × 10 M, with good signal reproducibility (RSD of 11.3%). In addition, the substrate showed excellent sensitivity in detecting nanoplastics such as poly(ethylene terephthalate) (200 nm) and polystyrene (100 nm) with LODs reaching up to 0.051 and 8.2 μg/mL, respectively. This work provides a facile approach for the preparation of highly flexible plasmonic substrates, showing great potential for the SERS detection of a variety of environmental pollutants.
水和食品中日益严重的纳米塑料污染危机,需要开发新的检测和回收方法。尽管现有各种技术,但表面增强拉曼散射(SERS)正成为一种用于微量检测微/纳米塑料的高效技术。然而,开发可用于环境介质中灵敏检测的高重现性、稳定且灵活的SERS基底仍然是一项挑战。在此,我们报告了一种基于多孔树枝状金膜的大面积、三维(3D)且高度灵活的SERS基底的制备方法,该基底通过在与真空兼容的深共熔溶剂(DES)涂层玻璃基底上简便地热蒸发金,然后进行直接转移过程,制备在柔性氧化铟锡(ITO)基底上。所制备的3D树枝状金/ITO柔性基底可用于以结晶紫(CV)作为探针分析物分子的超灵敏SERS检测,检测限低至6.4×10⁻⁸ M,具有良好的信号重现性(相对标准偏差为11.3%)。此外,该基底在检测聚对苯二甲酸乙二酯(200 nm)和聚苯乙烯(100 nm)等纳米塑料时表现出优异的灵敏度,检测限分别高达0.051和8.2 μg/mL。这项工作为制备高度灵活的等离子体基底提供了一种简便方法,在SERS检测各种环境污染物方面显示出巨大潜力。