A modification in the gas separation performance of zeolitic imidazolate framework (ZIF)-supported hollow fiber (HF) membranes by means of an imine-condensation functionalization reaction carried out by microfluidics is reported. The accommodation of voluminous amine molecules in the SIM-1, Zn(4-methyl-5-imidazolecarboxaldehyde)2, also known as ZIF-94, sod structure during the functionalization reaction caused the ZIF atoms to be rearranged in a less dense rho structure, with a wider pore diameter and a diminished CO2 affinity. These changes had effects on the membrane performance, resulting in an enhanced CO2 permeance while maintaining a good permeance-selectivity balance. ZIF aldehyde-containing SIM-1 membranes were earlier prepared on t...
Advanced porous materials with uniform molecular scale apertures are highly desirable for energy rel...
With increasing energy consumption and fossil fuels being the primary energy source, there is need t...
Metal-organic frameworks (MOFs) possess tunable characteristics that allow various modifications to ...
A modification in the gas separation performance of zeolitic imidazolate framework (ZIF)-supported h...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Mixed Matrix Membranes (MMM) with enhanced selectivity and permeability are preferred for gas separa...
The new ZIF named UZAR-S13 is formed by Zn2+ and 4(5)-(hydroxymethyl)imidazolate. UZAR-S13 has two d...
The ability to tailor the pore structure of metal- organic framework (MOF) membranes enables synthes...
Double-layered zeolitic imidazolate framework (ZIF) membranes were fabricated inside polyimide P84 h...
International audienceA substituted imidazolate-based MOF (SIM-1) membrane has been crystallized in ...
Metal organic framework (MOF) membranes have gained more attentions due to their abilities in variou...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Hydrocarbon separation in the industry is challenging and currently achieved by well-established rel...
The conversion of ZIF-8 into ZIF-7 via post-synthetic modification with benzimidazole has been monit...
Mixed matrix membranes (MMMs) have received world-wide attention for natural gas purification due to...
Advanced porous materials with uniform molecular scale apertures are highly desirable for energy rel...
With increasing energy consumption and fossil fuels being the primary energy source, there is need t...
Metal-organic frameworks (MOFs) possess tunable characteristics that allow various modifications to ...
A modification in the gas separation performance of zeolitic imidazolate framework (ZIF)-supported h...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Mixed Matrix Membranes (MMM) with enhanced selectivity and permeability are preferred for gas separa...
The new ZIF named UZAR-S13 is formed by Zn2+ and 4(5)-(hydroxymethyl)imidazolate. UZAR-S13 has two d...
The ability to tailor the pore structure of metal- organic framework (MOF) membranes enables synthes...
Double-layered zeolitic imidazolate framework (ZIF) membranes were fabricated inside polyimide P84 h...
International audienceA substituted imidazolate-based MOF (SIM-1) membrane has been crystallized in ...
Metal organic framework (MOF) membranes have gained more attentions due to their abilities in variou...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Hydrocarbon separation in the industry is challenging and currently achieved by well-established rel...
The conversion of ZIF-8 into ZIF-7 via post-synthetic modification with benzimidazole has been monit...
Mixed matrix membranes (MMMs) have received world-wide attention for natural gas purification due to...
Advanced porous materials with uniform molecular scale apertures are highly desirable for energy rel...
With increasing energy consumption and fossil fuels being the primary energy source, there is need t...
Metal-organic frameworks (MOFs) possess tunable characteristics that allow various modifications to ...