Abstract Today, the most effective and suitable method to obtain molecular H2 is the extraction from mixtures where it is present, using gas‐sieving membranes. To this aim, the preparation and characterization of layered nano‐composites are described, made of alternated layers of positively charged Poly(Diallyl Dimethyl Ammonium chloride) (PDDA) and negatively charged graphene oxide (GO) nanosheets with high and tunable selectivity for H2 purification. The composites are assembled exploiting electrostatic interactions and the layer‐by‐layer technique; this study correlates permeance tests with changes in chemical composition and structure of the material using X‐rays Photoelectron Spectroscopy, X‐rays diffraction water contact angle, and su...
This report explores possible methods of improving CO{sub 2} selectivity in polymer based membranes....
International audienceSandwich-type membranes comprising of graphene oxide (GO) as a "bun" and sodal...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
Graphene oxide was used as charge able to confer high selectivity to the final product. A self-assem...
Membranes play an important role in gas separation on account of their low cost, energy efficiency, ...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
Graphene oxide (GO) can form ultrapermeable and ultraselective membranes that are promising for vari...
Graphene oxide (GO) and graphene membranes were fabricated by dip-coating a GO dispersion on a speci...
The performance of polymer-based membranes for gas separation is currently limited by the Robeson li...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
A novel fixed carrier composite membrane was prepared via interfacial polymerization by using graphe...
Membrane-based gas separation technologies have attracted great interest because of their potential ...
Biohydrogen is a potential alternative for fossil fuels and it can be produced from POME fermentatio...
This report explores possible methods of improving CO{sub 2} selectivity in polymer based membranes....
International audienceSandwich-type membranes comprising of graphene oxide (GO) as a "bun" and sodal...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
Graphene oxide was used as charge able to confer high selectivity to the final product. A self-assem...
Membranes play an important role in gas separation on account of their low cost, energy efficiency, ...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
Graphene oxide (GO) can form ultrapermeable and ultraselective membranes that are promising for vari...
Graphene oxide (GO) and graphene membranes were fabricated by dip-coating a GO dispersion on a speci...
The performance of polymer-based membranes for gas separation is currently limited by the Robeson li...
We herein report a facile preparation of graphene oxide (GO) membranes including three steps: (1) mi...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
A novel fixed carrier composite membrane was prepared via interfacial polymerization by using graphe...
Membrane-based gas separation technologies have attracted great interest because of their potential ...
Biohydrogen is a potential alternative for fossil fuels and it can be produced from POME fermentatio...
This report explores possible methods of improving CO{sub 2} selectivity in polymer based membranes....
International audienceSandwich-type membranes comprising of graphene oxide (GO) as a "bun" and sodal...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...