» Articles » PMID: 35558822

PH-Induced Changes in the SERS Spectrum of Thiophenol at Gold Electrodes During Cyclic Voltammetry

Overview
Authors
Affiliations
Soon will be listed here.
Abstract

Thiophenol is a model compound used in the study of self-assembly of arylthiols on gold surfaces. In particular, changes in the surface-enhanced Raman scattering (SERS) spectra of these self-assembled monolayers (SAMs) with a change of conditions have been ascribed to, for example, differences in orientation with respect to the surface, protonation state, and electrode potential. Here, we show that potential-induced changes in the SERS spectra of SAMs of thiophenol on electrochemically roughened gold surfaces can be due to local pH changes at the electrode. The changes observed during the potential step and cyclic voltammetry experiments are identical to those induced by acid-base switching experiments in a protic solvent. The data indicate that the potential-dependent spectral changes, assigned earlier to changes in molecular orientation with respect to the surface, can be ascribed to changes in the pH locally at the electrode. The pH at the electrode can change as much as several pH units during electrochemical measurements that reach positive potentials where oxidation of adventitious water can occur. Furthermore, once perturbed by applying positive potentials, the pH at the electrode takes considerable time to recover to that of the bulk solution. It is noted that the changes in pH even during cyclic voltammetry in organic solvents can be equivalent to the addition of strong acids, such as CFSOH, and such effects should be considered in the study of the redox chemistry of pH-sensitive redox systems and potential-dependent SERS in particular.

Citing Articles

Application of a Strong Base Anion Exchange Resin for the Removal of Thiophenol from Aqueous Solution.

Chruszcz-Lipska K, Winid B, Solecka U Molecules. 2025; 30(3).

PMID: 39942629 PMC: 11821165. DOI: 10.3390/molecules30030525.


Exploring Surface-Enhanced Raman Spectroscopy of Pyrazine-2-Carbonitrile for Indirect Label-Free Albumin Quantification in an Endothelium Permeability Assay.

Klement W, Duijnstee D, Telle V, Staykov A, Browne W, Verpoorte E Anal Chem. 2025; 97(7):4075-4083.

PMID: 39928859 PMC: 11866285. DOI: 10.1021/acs.analchem.4c05906.


Investigating Perampanel Antiepileptic Drug by DFT Calculations and SERS with Custom Spinning Cell.

Villa N, Picarelli C, Iacoe F, Zanchi C, Ossi P, Lucotti A Molecules. 2023; 28(16).

PMID: 37630222 PMC: 10459216. DOI: 10.3390/molecules28165968.


Selective Analysis of Redox Processes at the Electrode Interface with Time-Resolved Raman Spectroscopy.

Klement W, Steen J, Browne W Langmuir. 2023; 39(30):10383-10394.

PMID: 37477006 PMC: 10399290. DOI: 10.1021/acs.langmuir.3c00633.

References
1.
Stammer X, Tonigold K, Bashir A, Kafer D, Shekhah O, Hulsbusch C . A highly ordered, aromatic bidentate self-assembled monolayer on Au(111): a combined experimental and theoretical study. Phys Chem Chem Phys. 2010; 12(24):6445-54. DOI: 10.1039/c002215m. View

2.
Rajaraman G, Caneschi A, Gatteschi D, Totti F . A periodic mixed gaussians-plane waves DFT study on simple thiols on Au(111): adsorbate species, surface reconstruction, and thiols functionalization. Phys Chem Chem Phys. 2011; 13(9):3886-95. DOI: 10.1039/c0cp02042g. View

3.
Cometto F, Paredes-Olivera P, Macagno V, Patrito E . Density functional theory study of the adsorption of alkanethiols on Cu(111), Ag(111), and Au(111) in the low and high coverage regimes. J Phys Chem B. 2006; 109(46):21737-48. DOI: 10.1021/jp053273v. View

4.
Hu G, Jin R, Jiang D . Beyond the staple motif: a new order at the thiolate-gold interface. Nanoscale. 2016; 8(48):20103-20110. DOI: 10.1039/c6nr07709a. View

5.
Weigend F, Ahlrichs R . Balanced basis sets of split valence, triple zeta valence and quadruple zeta valence quality for H to Rn: Design and assessment of accuracy. Phys Chem Chem Phys. 2005; 7(18):3297-305. DOI: 10.1039/b508541a. View