Ultrathin (∼200 nm) and defect-free carbon molecular sieve (CMS) membranes were successfully fabricated on the inner surface of hierarchically structured porous supports (γ-Al2O3 layer coated α-Al2O3 tubes) via pyrolysis of a polyimide precursor at 700 °C. The chemical structure of the carbonized samples was examined in detail by means of Raman spectroscopy and X-ray photoelectron spectroscopy. From these studies, it was found that the carbonized samples consist of graphitic carbon layers containing sp3-type defects. The synthesized CMS membranes showed an unprecedentedly high H2 permeance of up to 1.1 × 10−6 mol m−2 s−1 Pa−1 and ideal separation factors of 24, 130 and 228 for H2/CO2, H2/N2 and H2/CH4, respectively at 200 °C. Furthermore, o...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
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...
Asymmetric carbon molecular sieve (CMS) membranes prepared from cellulose hollow fiber precursors we...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
For some time, carbon molecular sieve membranes (CMSMs) have been promoted as energy-efficient candi...
Tubular supported carbon molecular sieve membranes (CMSMs) with high hydrophilicity and perm-selecti...
Aromatic polyamides (aramids) are broadly used to manufacture desalination membranes; however, they ...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
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...
Asymmetric carbon molecular sieve (CMS) membranes prepared from cellulose hollow fiber precursors we...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
Carbon membranes have great potential for highly selective and cost-efficient gas separation. Carbon...
Carbon molecular sieve (CMS) membranes with rigid and uniform pore structures are ideal candidates f...
For some time, carbon molecular sieve membranes (CMSMs) have been promoted as energy-efficient candi...
Tubular supported carbon molecular sieve membranes (CMSMs) with high hydrophilicity and perm-selecti...
Aromatic polyamides (aramids) are broadly used to manufacture desalination membranes; however, they ...
Carbon membranes are a potentially attractive candidate for the in-situ removal of water vapor in CO...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...
Carbon molecular sieve membranes (CMSMs) are emerging as promising solution to overcome the drawback...