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Surface-enhanced infrared absorption (SEIRA) and its use in analysis of plasma-modified surface

✍ Scribed by Shiming Geng; J. Friedrich; J. Gähde; Liping Guo


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
252 KB
Volume
71
Category
Article
ISSN
0021-8995

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✦ Synopsis


A thin film (Ͻ10 nm) of fine metal clusters (silver or gold) with an island form was deposited on a CaF 2 salt plate by slow vacuum thermal evaporation. Molecular layers of stearic acid, p-nitrobenzoic acid, and m-nitrobenzoic acid (p-and m-NBA) were prepared on the thin metal film. The system was then examined by infrared spectroscopy attenuated total reflection (IR-ATR). It was found that through the interaction between the metal islands film and the electric field of the incident IR beam the infrared absorption of the molecule layers adsorbed on the islands was enhanced by a factor of 17. The surface-enhanced IR absorption (SEIRA) also presents a selection rule. This method was then used to study the surface modification with O 2 and NH 3 plasma and the plasma polymerization of allylamine. This is the first time that SEIRA has been used in plasma investigations. A model is provided to explain the interactions between the metal islands film and the electric field of the incident IR beam in the SEIRA. The in-plasma-built functional groups can be further used to graft biofunctional molecules for the biomedical industry.


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