Six different silica-polyethylene glycol (SiO2/PEG) organic-inorganic hybrid nanocomposites with different amounts of PEG 400 (6, 12, 24, 50, 60 and 70 wt.%) were synthesized by the sol-gel technique. Their thermal behavior was studied by thermogravimetry (TG) and differential thermal analysis (DTA) under a flowing argon atmosphere in a wide temperature range and their behavior was compared with those of the related materials with 60 and 70 wt.% of PEG, whose results were reported in a previously study. To identify all physical and chemical processes occurring in these promising materials, the gases evolved during TG experiments were analyzed at characteristic constant temperatures by FTIR. These measurements revealed that all the materials undergo a two-step dehydration (loosing water physically bound at temperature lower than 1008C) with overlapping of both TG and DTA curves, thus suggesting an identical behavior up to 2008C regardless the different content of PEG. A different behavior is observed at higher temperature, where three different exothermic effects were observed in the range 200–4508C accompanied by mass losses ranging from 6 to 37% for the SiO2/PEG hybrid materials.

Thermal Behavior and Dehydration Kinetic Study of SiO2/PEG Hybrid Gel Glasses / VECCHIO CIPRIOTI, Stefano; Catauro, Michelina; Bollino, Flavia; Tuffi, Riccardo. - In: POLYMER ENGINEERING AND SCIENCE. - ISSN 1548-2634. - ELETTRONICO. - 57:(2017), pp. 606-612. [10.1002/pen.24561]

Thermal Behavior and Dehydration Kinetic Study of SiO2/PEG Hybrid Gel Glasses

VECCHIO CIPRIOTI, Stefano;
2017

Abstract

Six different silica-polyethylene glycol (SiO2/PEG) organic-inorganic hybrid nanocomposites with different amounts of PEG 400 (6, 12, 24, 50, 60 and 70 wt.%) were synthesized by the sol-gel technique. Their thermal behavior was studied by thermogravimetry (TG) and differential thermal analysis (DTA) under a flowing argon atmosphere in a wide temperature range and their behavior was compared with those of the related materials with 60 and 70 wt.% of PEG, whose results were reported in a previously study. To identify all physical and chemical processes occurring in these promising materials, the gases evolved during TG experiments were analyzed at characteristic constant temperatures by FTIR. These measurements revealed that all the materials undergo a two-step dehydration (loosing water physically bound at temperature lower than 1008C) with overlapping of both TG and DTA curves, thus suggesting an identical behavior up to 2008C regardless the different content of PEG. A different behavior is observed at higher temperature, where three different exothermic effects were observed in the range 200–4508C accompanied by mass losses ranging from 6 to 37% for the SiO2/PEG hybrid materials.
2017
Polymers and Plastics; Materials Chemistry2506 Metals and Alloys
01 Pubblicazione su rivista::01a Articolo in rivista
Thermal Behavior and Dehydration Kinetic Study of SiO2/PEG Hybrid Gel Glasses / VECCHIO CIPRIOTI, Stefano; Catauro, Michelina; Bollino, Flavia; Tuffi, Riccardo. - In: POLYMER ENGINEERING AND SCIENCE. - ISSN 1548-2634. - ELETTRONICO. - 57:(2017), pp. 606-612. [10.1002/pen.24561]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/995616
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