Valdivia Samuel, García-González Francisco, Aranda Daniel, Ávila Ferrer Francisco J, López-Tocón Isabel, Soto Juan, Otero Juan Carlos
Andalucía Tech, Facultad de Ciencias, Departamento de Química Física, Universidad de Málaga, E-29071 Málaga, Spain.
J Phys Chem C Nanomater Interfaces. 2024 Jul 19;128(30):12566-12574. doi: 10.1021/acs.jpcc.4c03084. eCollection 2024 Aug 1.
Electrochemical SERS of pyridine adsorbed on a silver electrode has been analyzed by comparing the spectra to the calculated normal Raman and resonance Raman intensities of model systems of pyridine bonded to linear silver clusters with different densities of charge through the nitrogen (Ag-NPy) or flipped through the hydrogen in the para-position (Ag-HPy). The changes observed in the ν(CH) region of the SERS have been investigated for the first time and related to a molecular reorientation at negative surface excess of charge of the metal in such a way that the ν(CH) bands with the highest (mode 2) and lowest (mode 13) wavenumber dominate this spectral region at positive or negative electrode potentials, respectively. The calculations support that the ν(CH) region is dominated by a specific vibration depending on pyridine orientation and suggest that both species coexist in the SERS recorded at negative potentials. This conclusion is supported by the SERS of centrosymmetric pyrazine which do not show this behavior and remembers the predictions from the old propensity rules of the so-called electromagnetic mechanism of SERS.
通过将吸附在银电极上的吡啶的电化学表面增强拉曼光谱(SERS)与吡啶与线性银簇模型体系的计算出的正常拉曼强度和共振拉曼强度进行比较来分析,该模型体系中吡啶通过氮(Ag-NPy)以不同电荷密度与线性银簇键合,或者通过对位的氢翻转(Ag-HPy)。首次研究了在SERS的ν(CH)区域中观察到的变化,并将其与金属表面电荷负过量时的分子重新取向相关联,使得波数最高(模式2)和最低(模式13)的ν(CH)带分别在正或负电极电位下主导该光谱区域。计算结果支持ν(CH)区域由取决于吡啶取向的特定振动主导,并表明这两种物种在负电位下记录的SERS中共存。这一结论得到了中心对称的吡嗪的SERS的支持,其不显示这种行为,并符合所谓SERS电磁机制的旧倾向规则的预测。