While polymeric membranes are conventional for gas separation processes, significant improvements remain possible and thereby the search for novel polymers is still on-going. The present study provides a way to develop structure-property relationship for polyimides and copolyimides, in order to lead new experimental studies with respect to recommendations on tunable monomers with promising transport properties for specific applications. This method advances the group contribution study based on molar volume contributions of subunits proposed by Robeson et al. [1] for the prediction of He, H2, O2, N2, CO2 and CH4 permeability parameters and O2/N2, CO2/CH4, H2/CO2, H2/CH4, CO2/N2, and He/N2 perm-selectivities of 490 polyimide and copolyimide ...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
Separation of many commercially important gas pairs using membranes is a growing application in the ...
Separation of many commercially important gas pairs using membranes is a growing application in the ...
© 2019 Elsevier B.V. Polyimides (PIs) are an important, well-established, and commercialized class ...
Separation of CO2/CH4 is one of the most important separations in oil and gas industries. Polyimide ...
Polyimide copolymers as materials for gas separation containing polyether soft segment were synthesi...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A series of new diamine monomers, with systematic variations in their chemical structure, by introdu...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A series novel fluorinated copolyimides were synthesized with various diamine compositions by chemic...
© 2019 Elsevier Ltd A set of new stiff and contorted polyimides were prepared to systematically lin...
Polyimide membrane has a wide variety of applications, especially in natural gas industry for remov...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
Separation of many commercially important gas pairs using membranes is a growing application in the ...
Separation of many commercially important gas pairs using membranes is a growing application in the ...
© 2019 Elsevier B.V. Polyimides (PIs) are an important, well-established, and commercialized class ...
Separation of CO2/CH4 is one of the most important separations in oil and gas industries. Polyimide ...
Polyimide copolymers as materials for gas separation containing polyether soft segment were synthesi...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A series of new diamine monomers, with systematic variations in their chemical structure, by introdu...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A range of polyimides with characteristics similar to a polymer of intrinsic microporosity (PIM) wer...
A series novel fluorinated copolyimides were synthesized with various diamine compositions by chemic...
© 2019 Elsevier Ltd A set of new stiff and contorted polyimides were prepared to systematically lin...
Polyimide membrane has a wide variety of applications, especially in natural gas industry for remov...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
Gas separation performance of a membrane highly hinges on its physical properties. In this study, th...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...