Barbillon Grégory, Graniel Octavio, Bechelany Mikhael
EPF-Ecole d'Ingénieurs, 3 Bis Rue Lakanal, 92330 Sceaux, France.
Institut Européen des Membranes (IEM), UMR-5635, Université de Montpellier, ENSCM, CNRS, Place Eugène Bataillon, 34095 Montpellier, France.
Nanomaterials (Basel). 2021 Aug 25;11(9):2174. doi: 10.3390/nano11092174.
In this paper, we are relating a significant improvement of the SERS effect achieved with assembled Au/ZnO nano-urchins. This improvement is realized thanks to an excellent capacity of adsorption (denoted ) for thiram molecules on these plasmonic nano-urchins, which is a key point to be taken into account for obtaining a SERS spectrum. Moreover, this outlook may be employed for different types of plasmonic substrates and for a wide number of molecules. We studied the capacity of the assembled Au/ZnO nano-urchins to be sensitive to the pesticide thiram, which adsorbs well on metals via the metal-sulfur bond. For the thiram detection, we found a limit concentration of 10 pM, a value of this capacity of adsorption () of 9.5 × 106 M-1 and a factor of analytical enhancement equal to 1.9 × 108.
在本文中,我们阐述了通过组装的金/氧化锌纳米海胆实现的表面增强拉曼散射(SERS)效应的显著改善。这种改善得益于这些等离子体纳米海胆对福美双分子具有出色的吸附能力(用表示),这是获得SERS光谱时需要考虑的关键因素。此外,这种方法可用于不同类型的等离子体基底和多种分子。我们研究了组装的金/氧化锌纳米海胆对农药福美双的敏感能力,福美双通过金属 - 硫键很好地吸附在金属上。对于福美双检测,我们发现极限浓度为10皮摩尔,这种吸附能力()的值为9.5×10⁶ M⁻¹,分析增强因子等于1.9×10⁸。