Surface enhanced Raman scattering by a new derivative of acridine in solutions of colloidal silver
- Authors: Solovyeva E.V.1, Khaziyeva D.A.1, Myund L.A.1, Denisova A.S.1
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Affiliations:
- Institute of Chemistry
- Issue: Vol 122, No 3 (2017)
- Pages: 435-439
- Section: Condensed-Matter Spectroscopy
- URL: https://journal-vniispk.ru/0030-400X/article/view/165348
- DOI: https://doi.org/10.1134/S0030400X17030183
- ID: 165348
Cite item
Abstract
A new derivative of acridine, 4,5-bis(N,N-di(2-hydroxyethyl)iminomethyl)acridine (BHIA), which is a selective fluorophore relative to cadmium cations, is studied by the method of surface-enhanced Raman scattering (SERS). The SERS spectra of BHIA adsorbed on colloidal silver particles exhibit a high intensity and temporal stability of the signal. An assignment of the bands present in the studied spectral range is given. The dependence of the SERS spectra of BHIA on the solution’s pH reveals that the ligand can exist on the surface in protonated and deprotonated forms. The stability of the deprotonated form on the surface suggests that the ligand interacts with the surface by means of a conjugated π-system of aromatic rings. The addition of the salt of halide ions to the solution has a significant influence on the SERS spectrum. This effect is due to the displacement of the adsorbate molecules from the first monolayer, which is accompanied by the transition of BHIA from the chemi- to the physisorbed form.
About the authors
E. V. Solovyeva
Institute of Chemistry
Author for correspondence.
Email: solovyeva.elena.v@gmail.com
Russian Federation, St. Petersburg, 198504
D. A. Khaziyeva
Institute of Chemistry
Email: solovyeva.elena.v@gmail.com
Russian Federation, St. Petersburg, 198504
L. A. Myund
Institute of Chemistry
Email: solovyeva.elena.v@gmail.com
Russian Federation, St. Petersburg, 198504
A. S. Denisova
Institute of Chemistry
Email: solovyeva.elena.v@gmail.com
Russian Federation, St. Petersburg, 198504
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