Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent
Most of porous polymer materials are mainly prepared by solution phase inversion method. The de-mixing process can be initiated by diffusive solvent/non-solvent exchange of binary, ternary or multicomponent mixture. Recently, supercritical CO2 (ScCO2) is used as a non-solvent to prepare porous polym...
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Iran Polymer and Petrochemical Institute
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doaj-42babda8a7384ac5ba14440ebde60d9d2020-11-24T21:12:52ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832015-06-0128210910110.22063/jipst.2015.12371237Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solventMohsen Izadi0Mohammad Hossein Navid Famili1Zahra Maghsoud2Polymer Engineering Group, Faculty of Engineering, Tarbiat Modares University, P.O. Box: 14115-143, Tehran, IranPolymer Engineering Group, Faculty of Engineering, Tarbiat Modares University, P.O. Box: 14115-143, Tehran, IranDepartment of Chemical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Postal Code: 9177948974, Mashhad, IranMost of porous polymer materials are mainly prepared by solution phase inversion method. The de-mixing process can be initiated by diffusive solvent/non-solvent exchange of binary, ternary or multicomponent mixture. Recently, supercritical CO2 (ScCO2) is used as a non-solvent to prepare porous polymers. ScCO2 possesses excellent properties, such as environmental friendliness, liquid-like density and gas-like diffusivity in comparison with conventional liquid non-solvents. Porous polyurethane was prepared from polymer/N-dimethylformamide (DMF) solution using a supercritical fluid-phase inversion process in which carbon dioxide acted as the non-solvent. The effects of time delay, casting temperature and ratio of polyol/chain extender (POL/CE) on the membrane morphology and structure (size and distribution of cells and pores, thickness of dense layer and porosity) were studied. According to the results, a minimum time delay of 120 min was determined for formation of a suitable structure. The dense layer of 77.6 μm thickness was decreased to 43.1 μm by lowering casting temperature from 55°C to 35°C. The ratio of POL/CE influenced the thermodynamic and kinetic properties. A decrease in POL/CE ratio led to formation of smaller and uniform cells and increased porosity. On decreasing the ratio of POL/CE from 2 to 0.25, the mean diameter of the cells at 6.3 μm dropped to 3 μm.http://jips.ippi.ac.ir/article_1237_c5ccc6e5f59cb045fbc2d3c479bab0ce.pdfphase inversionthermoset polyurethanecells and pores size distributionnucleation and growthspinodal de-mixing |
collection |
DOAJ |
language |
fas |
format |
Article |
sources |
DOAJ |
author |
Mohsen Izadi Mohammad Hossein Navid Famili Zahra Maghsoud |
spellingShingle |
Mohsen Izadi Mohammad Hossein Navid Famili Zahra Maghsoud Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent علوم و تکنولوژی پلیمر phase inversion thermoset polyurethane cells and pores size distribution nucleation and growth spinodal de-mixing |
author_facet |
Mohsen Izadi Mohammad Hossein Navid Famili Zahra Maghsoud |
author_sort |
Mohsen Izadi |
title |
Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent |
title_short |
Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent |
title_full |
Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent |
title_fullStr |
Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent |
title_full_unstemmed |
Preparation of Porous Thermoset Polyurethane with Supercritical CO2 as Non-solvent |
title_sort |
preparation of porous thermoset polyurethane with supercritical co2 as non-solvent |
publisher |
Iran Polymer and Petrochemical Institute |
series |
علوم و تکنولوژی پلیمر |
issn |
1016-3255 2008-0883 |
publishDate |
2015-06-01 |
description |
Most of porous polymer materials are mainly prepared by solution phase inversion method. The de-mixing process can be initiated by diffusive solvent/non-solvent exchange of binary, ternary or multicomponent mixture. Recently, supercritical CO2 (ScCO2) is used as a non-solvent to prepare porous polymers. ScCO2 possesses excellent properties, such as environmental friendliness, liquid-like density and gas-like diffusivity in comparison with conventional liquid non-solvents. Porous polyurethane was prepared from polymer/N-dimethylformamide (DMF) solution using a supercritical fluid-phase inversion process in which carbon dioxide acted as the non-solvent. The effects of time delay, casting temperature and ratio of polyol/chain extender (POL/CE) on the membrane morphology and structure (size and distribution of cells and pores, thickness of dense layer and porosity) were studied. According to the results, a minimum time delay of 120 min was determined for formation of a suitable structure. The dense layer of 77.6 μm thickness was decreased to 43.1 μm by lowering casting temperature from 55°C to 35°C. The ratio of POL/CE influenced the thermodynamic and kinetic properties. A decrease in POL/CE ratio led to formation of smaller and uniform cells and increased porosity. On decreasing the ratio of POL/CE from 2 to 0.25, the mean diameter of the cells at 6.3 μm dropped to 3 μm. |
topic |
phase inversion thermoset polyurethane cells and pores size distribution nucleation and growth spinodal de-mixing |
url |
http://jips.ippi.ac.ir/article_1237_c5ccc6e5f59cb045fbc2d3c479bab0ce.pdf |
work_keys_str_mv |
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