Immersion infrared reflection‐absorption spectroscopy studies on diamond‐like carbon surfaces. I. Formation of electrophilic groups on surfaces of amorphous carbon films aging in ambient air

Author:

Klages Claus‐Peter1ORCID,Bandorf Ralf2,Gerdes Holger2,Jung Antje1,Raev Vitaly1

Affiliation:

1. Institute for Surface Technology, IOT Technische Universität Braunschweig Braunschweig Germany

2. Fraunhofer Institute for Surface Engineering and Thin Films, IST Braunschweig Germany

Abstract

AbstractTo study chemical functional groups on surfaces of diamond‐like carbon (DLC) films, a highly sensitive infrared reflection‐absorption spectroscopic technique, immersion infrared reflection‐absorption spectroscopy (IRRAS), is applied in the present study. The method employs (i) a conventional attenuated total reflection (ATR) accessory with a Ge crystal as an immersion medium and (ii) an aluminum underlayer beneath the 50–70 nm thick DLC film. Sensitivity, selectivity, and quantifiability of the method can be enhanced by chemical derivatization (CD), coupling chemical moieties with strong characteristic vibrational bands to specific functional groups on the DLC surface. The method is applied to amorphous sputtered carbon films (a‐C) to demonstrate that electrophilic groups, most probably epoxy groups, are formed during aging under ambient conditions.

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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