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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Main Authors: Mohsen Izadi, Mohammad Hossein Navid Famili, Zahra Maghsoud
Format: Article
Language:fas
Published: Iran Polymer and Petrochemical Institute 2015-06-01
Series:علوم و تکنولوژی پلیمر
Subjects:
Online Access:http://jips.ippi.ac.ir/article_1237_c5ccc6e5f59cb045fbc2d3c479bab0ce.pdf
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spelling 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
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