Thin-film composite mixed matrix membranes (CMMMs) were fabricated using interfacial polymerization to achieve high permeance and selectivity for CO2 separation. This study revealed the role of substrate properties on performance, which are not typically considered important. In order to enhance the affinity between the substrate and the coating solution during interfacial polymerization and increase the selectivity of CO2, a mixture of polyethylene glycol (PEG) and dopamine (DOPA) was subjected to a spinning process. Then, the surface of the substrate was subjected to interfacial polymerization using polyethyleneimine (PEI), trimesoyl chloride (TMC), and sodium dodecyl sulfate (SDS). The effect of adding SDS as a surfactant on the structur...
Graphene oxide (GO) has been considered as a promising candidate for molecular separation because of...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
CO2 separation across polyethylene glycol (PEG)-based ultra-thin film composite mixed matrix membran...
Membrane technology appeals as an environmental friendly approach for CO2 capture application due to...
Carbon dioxide (CO2) is often found as the main impurity in natural gas, where methane (CH4) is the ...
Membrane separation technology can used to capture carbon dioxide from flue gas. However, plenty of ...
The CO2 gas separation performance of aminated reduced graphene oxide (A-rGO) incorporated PEBAX mix...
This dissertation describes preparation and characterization of graphene oxide (GO) incorporated pol...
This dissertation introduces the development of membrane-based CO2 separation system for post-combus...
A hollow fiber composite membrane was prepared by coating a poly(N,N-dimethylaminoethyl methacrylate...
© 2017 Elsevier B.V. The inherent defects of porous graphene (PG) formed during reduction etching pr...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
The configuration of thin film composite (TFC) in the form of hollow fiber is desired for gas separa...
Two kinds of isocyanate were used to modify graphene oxide (GO) samples. Then, polyimide (PI) hybrid...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
Graphene oxide (GO) has been considered as a promising candidate for molecular separation because of...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
CO2 separation across polyethylene glycol (PEG)-based ultra-thin film composite mixed matrix membran...
Membrane technology appeals as an environmental friendly approach for CO2 capture application due to...
Carbon dioxide (CO2) is often found as the main impurity in natural gas, where methane (CH4) is the ...
Membrane separation technology can used to capture carbon dioxide from flue gas. However, plenty of ...
The CO2 gas separation performance of aminated reduced graphene oxide (A-rGO) incorporated PEBAX mix...
This dissertation describes preparation and characterization of graphene oxide (GO) incorporated pol...
This dissertation introduces the development of membrane-based CO2 separation system for post-combus...
A hollow fiber composite membrane was prepared by coating a poly(N,N-dimethylaminoethyl methacrylate...
© 2017 Elsevier B.V. The inherent defects of porous graphene (PG) formed during reduction etching pr...
We fabricated novel composite (mixed matrix) membranes based on a permeable glassy polymer, Poly(2,6...
The configuration of thin film composite (TFC) in the form of hollow fiber is desired for gas separa...
Two kinds of isocyanate were used to modify graphene oxide (GO) samples. Then, polyimide (PI) hybrid...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
Graphene oxide (GO) has been considered as a promising candidate for molecular separation because of...
Realization of suitable membrane-based technology for efficient CO2 capture to mitigate climate chan...
CO2 separation across polyethylene glycol (PEG)-based ultra-thin film composite mixed matrix membran...