Surface-Enhanced Raman Scattering on Molecularly Imprinted Polymers in Water
✍ Scribed by Stefan Kostrewa; Marco Emgenbroich; Dieter Klockow; Günter Wulff
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 166 KB
- Volume
- 204
- Category
- Article
- ISSN
- 1022-1352
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✦ Synopsis
Abstract
Molecularly imprinted polymer layers were prepared on SERS‐active surfaces in order to directly monitor the uptake and release of certain substances to this polymer layer by surface enhanced Raman‐scattering (SERS). The imprinting system consisted of either (2__S__,3__S__)‐(+)‐di‐O‐benzoyl‐tartaric acid (1) or N‐benzyloxycarbonyl‐(L)‐aspartic acid (2) as templates. As binding site N,N′‐diethyl‐4‐vinylbenzamidine (3) was used which binds in a 2:1 complex to the templates. The release and uptake of the templates to the imprinted polymer could be followed in aqueous solution under physiological conditions (aqueous buffer, ambient temperature). The recorded SERS bands can be unequivocally assigned to the substances taken up, and it is therefore possible to directly detect a certain substance in the imprinted layer. Release and uptake are quick processes occurring within minutes. This method also offers the opportunity to use these layers in chemosensors in which case the stability has to be further increased.
SERS spectra of polymer coatings containing the template N‐benzyloxycarbonyl‐(L)‐aspartic acid (2) on gold and on silver surfaces, Raman spectra of pure 2 (template) and of a HEPES buffer solution (0.1 M, pH 7.3) which was used for the adsorption measurement.
imageSERS spectra of polymer coatings containing the template N‐benzyloxycarbonyl‐(L)‐aspartic acid (2) on gold and on silver surfaces, Raman spectra of pure 2 (template) and of a HEPES buffer solution (0.1 M, pH 7.3) which was used for the adsorption measurement.
📜 SIMILAR VOLUMES
With water in ethanol, we can observe surface-enhanced Raman scattering (SERS) of water molecules at electrolytic concentrattons as low as 0.02 M; in the pure-water SERS systems without ethanol, however, electrolytic concentrations higher than I M are required to observe SERS of water molecules. Eth
The anion effect on the surface-enhanced Raman scattering (SERS) of interfacial water molecules on Ag electrodes has been studied by adding concentrated KCI, KRr, KI or KF solution to dilute solutions. SERS of the interfacial water was detected after adding concentrated KCI, KRr or KI solution, but
## SURFACE -ENHANCED RAMAN SCATTERING FROM AMPHIPHILIC AND POLYMER MOLECULES ON SILVER AND GOLD SOLS 1. Ititrodttcrion 2. Expcritiietttal ('et?'II,\.ririiliitttn chloride ( BDll Ltd.) was recrysral-0 009-2614/S3/0000-0000/S 03.00 0 1983 North-Holland lized front acetone. This salt was then used to