This letter reports the first observation of both surface enhanced Raman scatterins (SERS) and surface enhanced resonanre Raman scattering (SERRS) from the transition metal complex tris(2.2'-bipyridine)ruthcnium(iI), Ru(bpy)<+. adsorbed on a silver electrode from acetonitrile (ACN). The assignment o
A surface enhanced Raman study of the adsorption of tris(2,2-bipyridine)ruthenium(II) and substituted analogues on chemically-deposited silver films
โ Scribed by Mark J. Edmiston; Robert D. Peacock
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 461 KB
- Volume
- 49
- Category
- Article
- ISSN
- 1386-1425
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โฆ Synopsis
The surface enhanced resonance Raman spectroscopy @ERRS) of a series of tris(2,2'bipyridine)ruthenium(II) complexes on chemically produced silver films is reported. The SERR spectra of [Ru(bipy)sl*+, several tris complexes of Ru(II) containing substituted 2,2'-bipyridine (4,4'-dimethyl-, 4,4'diphenyl-, 4,4'-diamino-and 4,4'-diethylcarboxylate-2,2'-bipyridine) ligands and the neutral cis-bis complexes [Ru(bipy)@JCS)J and [Ru(bipy)FM h s ow very high band intensities. The large enhancement arises from the combination of the inherent resonance Raman effect and the surface plasmon resonance (due to the rough nature of the silver fdm). The molecules are not chemisorbed on the silver surface and hence the enhancement occurs solely via the electromagnetic mechanism. The SERR spectra are virtually free of the fluorescence which dominates the corresponding RR spectra thus illustrating the use of SERRS in the vibrational spectroscopy of strongly luminescing species. The SERRS spectra of the substituted 2,2'-bipyridine complexes are discussed.
๐ SIMILAR VOLUMES
SJZRS on silver sol has been demonstrated to be an attractive and simple spectroscopic tool for transition-metal complexes. The SERS spectra of [Cr(bpy),)3+ on Ag sol are more similar to the solution Raman spectra of [Fe(bpy)3]2' or [Ru(bpy)3]2' than to that of [Cr(bpy)~])+, which gives a strong hin
The study of the adsorption behaviour of SCN-and at a silver substrate contributes substantially to an S 2 O 3 2improved insight into the electrochemical formation of a silver image in photographic development processes. (Surface-enhanced) Raman (SER) spectroscopy and quantum chemical calculations r