УДК: 535.399; 543.4
Study of microporous membranes using frustrated total internal reflection spectroscopy
Full text «Opticheskii Zhurnal»
Publication in Journal of Optical Technology
Волчек Б.З., Кононова С.В., Власова Е.Н., Мамедов Р.К., Михалев К.А. Исследование микропористых мембран с помощью метода спектроскопии нарушенного полного внутреннего отражения // Оптический журнал. 2003. Т.70. №1. С. 28–31.
Volchek B. Z., Kononova S. V., Vlasova E. N., Mamedov R. K., Mikhalev K. A. Study of microporous membranes using frustrated total internal reflection spectroscopy [in Russian] // Opticheskii Zhurnal. 2003. V. 70. No 1. P. 28–31.
B. Z. Volchek, S. V. Kononova, E. N. Vlasova, R. K. Mamedov, and K. A. Mikhalev, "Study of microporous membranes using frustrated total internal reflection spectroscopy," Journal of Optical Technology. 70(1), 22-24 (2003). https://doi.org/10.1364/JOT.70.000022
Infrared spectroscopy has been used to investigate the structure of polymeric gas-separator membrane systems, using as an example a composite microporous membrane made from polyfluoroamylacrylate ~PFAA! on an asymmetric substrate made from microporous polyamidoimide ~PAI!, as well as the orientation of a diffusion polymer close to the substrate. The nonlinearity of the gas-separator properties of the PAI1PFAA membrane is explained.
OCIS codes: 260.0261, 260.6970