Michałowska Aleksandra, Jędrzejewski Kacper, Kudelski Andrzej
Faculty of Chemistry, University of Warsaw, Pasteura 1 Str., 02-093 Warsaw, Poland.
Materials (Basel). 2022 Aug 29;15(17):5972. doi: 10.3390/ma15175972.
The abnormal metabolism or imbalance of dopamine may lead to some neurological disorders. Therefore, the facile and fast detection of this neurotransmitter is essential in the early diagnosis of some diseases. One of the methods that can be used for the detection and determination of dopamine is the surface-enhanced Raman scattering (SERS). In this contribution, we report a very strong influence of some salts (we used salts containing Na cations and the following anions: SO, F, Cl, Br, and I) on the spectral patterns and intensity of the SERS spectra of dopamine adsorbed on a nanostructured macroscopic silver substrate. The analysis of the recorded SERS spectra based on the assignments of Raman bands from the density-functional theory (DFT) calculations and based on the SERS surface selection rules reveals that when molecules of dopamine are adsorbed from an aqueous solution to which no electrolytes have been added, they adopt a flat orientation versus the silver surface; whereas, the molecules of dopamine co-adsorbed with various ions interact with the silver surface, mainly via phenolic groups, and they adopt a perpendicular orientation versus the metal surface. An addition of electrolytes also significantly influences the intensity of the recorded SERS spectrum; for example, an addition of NaSO to a final concentration of 1 M induces an increase in the intensity of the measured SERS spectrum by a factor of ca. 40. This means that the addition of electrolytes to the analyzed solution can reduce the limit of detection of dopamine by SERS spectroscopy. The abovementioned findings may facilitate the construction of dopamine SERS sensors.
多巴胺的代谢异常或失衡可能会导致一些神经紊乱。因此,便捷快速地检测这种神经递质对于某些疾病的早期诊断至关重要。可用于检测和测定多巴胺的方法之一是表面增强拉曼散射(SERS)。在本论文中,我们报道了某些盐(我们使用了含有Na阳离子以及以下阴离子的盐:SO、F、Cl、Br和I)对吸附在纳米结构宏观银基底上的多巴胺的SERS光谱的光谱模式和强度有非常强烈的影响。基于密度泛函理论(DFT)计算的拉曼谱带归属以及基于SERS表面选择规则对所记录的SERS光谱进行分析,结果表明,当多巴胺分子从未添加电解质的水溶液中吸附时,它们相对于银表面呈平躺取向;而与各种离子共吸附的多巴胺分子主要通过酚羟基与银表面相互作用,并且它们相对于金属表面呈垂直取向。添加电解质也会显著影响所记录的SERS光谱的强度;例如,添加NaSO至最终浓度为1 M会使所测SERS光谱的强度增加约40倍。这意味着向分析溶液中添加电解质可以降低SERS光谱法检测多巴胺的检测限。上述发现可能会促进多巴胺SERS传感器的构建。