首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Surface-enhanced Raman scattering of glyphosate on dispersed silver nanoparticles: A reinterpretation based on model molecules
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Surface-enhanced Raman scattering of glyphosate on dispersed silver nanoparticles: A reinterpretation based on model molecules

机译:分散银纳米粒子对草甘膦的表面增强拉曼散射:基于模型分子的重新诠释

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摘要

Glyphosate is a wide spread organophosphate herbicide whose use and associated risks are strongly debated. Many countries are regulating its use in field and it is often found in surface water. Therefore, a simple analytical method, possibly based on portable instruments, would be highly desirable. In case of many other pesticides, surface enhanced Raman scattering (SERS) spectroscopy was shown to be a very effective method to approach the problem. Glyphosate Raman and SERS spectra have been subject of different experimental and theoretical studies but still their interpretation is unclear and sensitivity in SERS experiments is quite low. In this work, SERS spectra on silver nanoparticles dispersion of glyphosate, its 2-C-13 isotopically substituted derivative, and its degradation product, the aminomethylphosphonic acid, have been obtained. The vibrational spectra of this latter compound allowed us to rule out a possible contribution of this species to the SERS spectra and the observed isotope shifts help to explain the SERS pattern in terms of the orientation of the adsorbed molecules on the metal surface. Therefore, we conclude that the relevant differences both on the intensities and wavenumbers between our SERS and Raman spectra of glyphosate must derive from the effect induced by the adsorption on the nanoparticles.
机译:草甘膦是一种宽的有机磷酸盐除草剂,其使用和相关风险得到了很大的争论。许多国家正在规范其在田间使用,并且通常在地表水中发现。因此,可以非常理想的是一种简单的分析方法,可能基于便携式仪器。在许多其他农药的情况下,表面增强的拉曼散射(SERS)光谱被证明是一种非常有效的方法来接近问题。草甘膦拉曼和SERS光谱是不同的实验和理论研究的主题,但仍然对他们的解释仍然不清楚,并且SERS实验中的敏感性相当低。在这项工作中,已经获得了草甘膦银纳米粒子分散的SERS光谱,其2-C-13同位素取代的衍生物及其降解产物,氨基甲基膦酸。这种后一种化合物的振动光谱允许我们排除该物种对SERS光谱的可能贡献,并且观察到的同位素转移有助于在金属表面上吸附分子的取向来解释SERS模式。因此,我们得出结论,对草甘膦的菌斑和拉曼光谱之间的强度和波浪之间的相关差异必须从纳米颗粒上吸附的吸附诱导的效果得出。

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