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超灵敏可重复使用的 SERS 传感器,可在单个平台上检测多种危险材料。

Ultra-sensitive reusable SERS sensor for multiple hazardous materials detection on single platform.

机构信息

Center for Nanosciences, Indian Institute of Technology Kanpur, 208016, India; Department of Physics, Jamia Millia Islamia, New Delhi 110025, India.

Center for Nanosciences, Indian Institute of Technology Kanpur, 208016, India.

出版信息

J Hazard Mater. 2021 Apr 5;407:124353. doi: 10.1016/j.jhazmat.2020.124353. Epub 2020 Oct 21.

Abstract

We demonstrate the detection of dipicolinic acid, (DPA), a biomarker of bacterial spores for Bacillus anthracis, 2,4-Dinitrotoluene (DNT) and picric acid (PA) nitroaromatic hazardous chemicals on ultra-sensitive, reusable femtosecond laser textured Au nanostructures decorated with hierarchical AuNPs as a SERS substrate. The AuNPs were achieved by ablating an Au sheet using two different laser scan speeds (1 and 0.1 mm/s) in linear and crossed patterns. The morphological studies revealed dense hierarchical nanostructures decorated with spherical AuNPs possessing 30-40 nm in size in 0.1 mm/s laser scan. The limits of detection (LOD) of the sensor were determined from the detailed SERS measurements and were estimated to be 0.83 pg/L, 3.6 pg/L and 2.3 pg/L for DPA, DNT, and PA, respectively. To the best of our knowledge, the achieved sensitivity is nearly 2 orders improved for DPA when compared with the currently reported LODs using other techniques and 1 order in the case of SERS. Moreover, for DNT and PA the LODs were found to be either superior or comparable with recent reports. We have also demonstrated the competence of our SERS substrates by testing a few real samples (water spiked with these analytes) and again obtained very good sensitivity.

摘要

我们展示了对炭疽杆菌生物标志物细菌孢子的二吡啶酸(DPA)、2,4-二硝基甲苯(DNT)和苦味酸(PA)等硝基芳香族危险化学品的检测,这是在具有分级 AuNPs 的超灵敏、可重复使用的飞秒激光纹理化 Au 纳米结构上实现的,AuNPs 是通过使用两种不同的激光扫描速度(1 和 0.1mm/s)在直线和交叉图案中烧蚀 Au 片而获得的。形态研究表明,在 0.1mm/s 的激光扫描速度下,密集的分级纳米结构上装饰有球形 AuNPs,其尺寸为 30-40nm。传感器的检测限(LOD)是从详细的 SERS 测量中确定的,分别估计为 DPA、DNT 和 PA 的 0.83pg/L、3.6pg/L 和 2.3pg/L。据我们所知,与目前使用其他技术报告的 LOD 相比,该灵敏度对于 DPA 提高了近 2 个数量级,而对于 SERS 则提高了 1 个数量级。此外,对于 DNT 和 PA,LOD 要么优于,要么与最近的报告相当。我们还通过测试一些实际样品(水中掺入这些分析物)证明了我们的 SERS 底物的能力,并且再次获得了非常好的灵敏度。

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