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The effects of formation and functionalization of graphene-based membranes on their gas and water vapor permeation properties.
Smrzová, Darina; Slusná, Michaela Srámová; Peter, Jakub; Benes, Hynek; Tolasz, Jakub; Georgievski, Ognen Pop; Maríková, Monika; Ecorchard, Petra.
Afiliação
  • Smrzová D; Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec- Rez, Czech Republic.
  • Slusná MS; Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec- Rez, Czech Republic.
  • Peter J; Institute of Macromolecular Chemistry of the Czech Academy of Sciences, Heyrovského nám. 2, 162 06 Prague 6, Czech Republic.
  • Benes H; Institute of Macromolecular Chemistry of the Czech Academy of Sciences, Heyrovského nám. 2, 162 06 Prague 6, Czech Republic.
  • Tolasz J; Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec- Rez, Czech Republic.
  • Georgievski OP; Institute of Macromolecular Chemistry of the Czech Academy of Sciences, Heyrovského nám. 2, 162 06 Prague 6, Czech Republic.
  • Maríková M; Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec- Rez, Czech Republic.
  • Ecorchard P; Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec- Rez, Czech Republic.
Heliyon ; 9(11): e21417, 2023 Nov.
Article em En | MEDLINE | ID: mdl-37942160
ABSTRACT
The gas and water vapor permeabilities of graphene-based membranes can be affected by the presence of different functional groups directly bound to the graphene network. In this work, one type of carboxylated graphene oxide (GO-COOH) and two types of graphene oxide synthesized i) under strong oxidative conditions directly from graphite (GO-1) and ii) under mild oxidative conditions from exfoliated graphene (GO-2) were used as precursors of self-standing membranes prepared with thicknesses in the range of 12-55 µm via slow-vacuum filtration preparation method. It was observed that the permeabilities for all tested gases decreased in order GO-2 > GO-1 > GO-COOH and depended on both the arrangement of graphene sheets and their functionalization. The GO-1 membrane with a high content of oxygen-containing groups showed the best performance for water vapor permeability. The GO-2 membrane with a thickness of 43 µm exhibited a disordered GO sheet morphology and, therefore, unique gas-separation performance towards H2/CO2 gas pair, showing high hydrogen permeability while keeping extremely high H2/CO2 ideal selectivity that exceeds the Robeson 2008 upper bound of polymer membranes.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Heliyon Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Heliyon Ano de publicação: 2023 Tipo de documento: Article