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Oxygen diffusivity of synthetic gels derived from prepolymers
Authors:Reinhard Renneberg  Kenji Sonomoto  Shigeo Katoh  Atsuo Tanaka
Institution:(1) Central Institute of Molecular Biology, Department of Enzymology, Academy of Sciences of the German Democratic Republic, Robert-Rössle-Straße 10, T115 Berlin-Buch, German Democratic Republic;(2) Department of Industrial Chemistry, Faculty of Engineering, Kyoto University, Yoshida, Sakyo-ku, 606 Kyoto, Japan;(3) Department of Chemical Engineering, Faculty of Engineering, Kyoto University, Yoshida, Sakyo-ku, 606 Kyoto, Japan
Abstract:Summary The oxygen-diffusivity (D m ) of 16 different gels formed with synthetic prepolymers (photo-crosslinkable resins, urethane resins and photosensitive resins), and that of calcium alginate (for comparison) was determined, using an oxygen electrode covered by the gel membranes with stepwise enzymatic removal of O2 from the buffer solution. The water content of the gels was found to be decisive for the O2-diffusivity of the gels: gels with the highest water content showed also the highest D m . From these findings, the suitability of different polymeric gels for substrate conversion and biosensor systems could be predicted.Abbreviations A surface area of the cathode - c O2-concentration in the membrane - d m total thickness of the membrane - D m O2-diffusivity in the membrane - ENT, ENTP polymers prepared from hydroxyethylacrylate - ENTA, ENTC isophorone diisocyanate and linear skeleton of different molecular weight of poly(ethylene glycol) (ENT) or poly(propylene glycol) (ENTP), resp. ENTA in addition bears anionic groups, ENTC cationic groups - F Faraday's constant - i s steady-state O2 reduction current - N number of electrons per mole unit of reaction - PU polyurethane polymers with poly(ethylene glycol) and poly(propylene glycol) parts in the diol moiety and isocyanate functional groups at both terminals of the prepolymer - PVA-SbQ polyvinyl alcohol stilbazolium polymer
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