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Development of Methods to Determine the Infrared-Optical Properties of Polymer Films
Authors:Gernot Oreski  Daniel Tscharnuter  Gernot M Wallner
Institution:1. Polymer Competence Center Leoben GmbH, Roseggerstraße 12, A-8700 Leoben, Austria;2. Institute of Materials Science and Testing of Plastics, University of Leoben, Franz-Josef-Straße 18, A-8700 Leoben, Austria
Abstract:Summary: In this paper, two methods for the determination of infrared optical properties of thick polymer films, based on FTIR spectroscopy, were implemented and used. Complex index of refraction data were generated for various ethylene copolymer films. Transmittance and reflectance spectra were measured in the mid infrared range using a gold-coated 100 mm-diameter integrating sphere. For the investigated films n and k values ranging from 1.3 to 1.6 and from 10−4 to 0.25 were determined, respectively. Regarding n, a good agreement was obtained for both methods, the transmittance/reflectance procedure (T/R method) used for transparent and semitransparent regions, and Single Substractive Kramers-Kronig (SSKK) algorithm applied for non-transparent regions. The highest k values were determined for the CH2 stretching vibration. The k values are dependent on comonomer content and film thickness. The combination of both methods allows for an accurate determination of n and k in the entire IR region relevant for solar application.
Keywords:complex index of refraction  ethylene copolymer films  FTIR spectroscopy  Kramers-Kronig  solar applications
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