Aromatic polyamides (aramids) are broadly used to manufacture desalination membranes; however, they are rarely considered for gas separation. Here, we report precise hydrogen sieving in ultramicroporous carbon molecular sieve (CMS) membranes derived from an uncrosslinked aramid synthesized by stirred interfacial polymerization of diamine and mixed diacid chloride monomers. While hydrogen bonds gave the aramid precursor unattractive separation performance, they were leveraged to provide aramid-derived CMS membranes with ultrahigh H2/CO2 selectivity exceeding all known CMS membranes. Adsorption in aramid-derived CMS membranes suggested their ultrahigh H2/CO2 selectivity was attributable to diffusion selectivity above 3000. The excellent solut...
Carbon hollow fiber membranes (CHFMs) were fabricated based on cellulose hollow fiber precursors spu...
The synthesis of a polymer that combines the processability of plastics with the extreme rigidity of...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Ultrathin (∼200 nm) and defect-free carbon molecular sieve (CMS) membranes were successfully fabrica...
Ultrathin (∼200 nm) and defect-free carbon molecular sieve (CMS) membranes were successfully fabrica...
Membrane separations are simple, energy efficient processes, which can be economically competitive w...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
A practical membrane separation process is considered in this study for removal of CO2 from natural ...
Inorganic membranes based on carbon molecular sieve (CMS) films hosting slit-like pores can yield hi...
For some time, carbon molecular sieve membranes (CMSMs) have been promoted as energy-efficient candi...
Asymmetric carbon molecular sieve (CMS) membranes prepared from cellulose hollow fiber precursors we...
Carbon hollow fiber membranes (CHFMs) were fabricated based on cellulose hollow fiber precursors spu...
The synthesis of a polymer that combines the processability of plastics with the extreme rigidity of...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Ultrathin (∼200 nm) and defect-free carbon molecular sieve (CMS) membranes were successfully fabrica...
Ultrathin (∼200 nm) and defect-free carbon molecular sieve (CMS) membranes were successfully fabrica...
Membrane separations are simple, energy efficient processes, which can be economically competitive w...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
A practical membrane separation process is considered in this study for removal of CO2 from natural ...
Inorganic membranes based on carbon molecular sieve (CMS) films hosting slit-like pores can yield hi...
For some time, carbon molecular sieve membranes (CMSMs) have been promoted as energy-efficient candi...
Asymmetric carbon molecular sieve (CMS) membranes prepared from cellulose hollow fiber precursors we...
Carbon hollow fiber membranes (CHFMs) were fabricated based on cellulose hollow fiber precursors spu...
The synthesis of a polymer that combines the processability of plastics with the extreme rigidity of...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...