International audienceA dynamic step-by-step methodology has been implemented to grow the HKUST-1 porous coordination polymer inside commercial anodic aluminium oxide membranes. Efficient crystal growth is achieved from the membrane inner walls and over the whole membrane thickness when copper acetate colloidal suspensions and benzene tricarboxylic acid solutions are forced to flow through the membrane. Sorption properties of the HKUST-1 embedded in membranes show selectivity for CO2 over CO, CH4, O2 and N2 similar to the bulk material
Nitrogen storage capacity was investigated on a highly efficient adsorbent nanoparticle called Metal...
The advantages of two dimensional covalent organic framework membranes to achieve high flux have bee...
A carbon-dioxide-responsive organic–inorganic nanocomposite membrane based on a through-hole anodic ...
International audienceA dynamic step-by-step methodology has been implemented to grow the HKUST-1 po...
International audienceA substituted imidazolate-based MOF (SIM-1) membrane has been crystallized in ...
MOF membranes have gained widespread attention due to their unprecedented gas separation performance...
Mg-MOF-74 is a metal organic framework with the highest CO2 adsorption capacity of any porous materi...
Modulating the crystal morphology, or the exposed crystal facets, of metal–organic frameworks (MOFs)...
Although there has been a rapid expansion into renewable energies such as (bio)methane, hydrogen, so...
A general approach to produce a variety of free-standing asymmetric MOF hybrid membranes and superst...
Metal Organic Frameworks (MOFs) present high surface areas, various pore topology as well as good st...
The stresses facing the water-energy nexus in coming decades demand advances in membrane materials r...
A new group of nanoporous materials, metal organic frameworks (MOFs), have emerged as a fascinating ...
The rational design of microporous membrane materials enables exceptional control over the pore-netw...
© 2017 The Royal Society of Chemistry. In this work, carbonic anhydrase (CA) molecules were embedded...
Nitrogen storage capacity was investigated on a highly efficient adsorbent nanoparticle called Metal...
The advantages of two dimensional covalent organic framework membranes to achieve high flux have bee...
A carbon-dioxide-responsive organic–inorganic nanocomposite membrane based on a through-hole anodic ...
International audienceA dynamic step-by-step methodology has been implemented to grow the HKUST-1 po...
International audienceA substituted imidazolate-based MOF (SIM-1) membrane has been crystallized in ...
MOF membranes have gained widespread attention due to their unprecedented gas separation performance...
Mg-MOF-74 is a metal organic framework with the highest CO2 adsorption capacity of any porous materi...
Modulating the crystal morphology, or the exposed crystal facets, of metal–organic frameworks (MOFs)...
Although there has been a rapid expansion into renewable energies such as (bio)methane, hydrogen, so...
A general approach to produce a variety of free-standing asymmetric MOF hybrid membranes and superst...
Metal Organic Frameworks (MOFs) present high surface areas, various pore topology as well as good st...
The stresses facing the water-energy nexus in coming decades demand advances in membrane materials r...
A new group of nanoporous materials, metal organic frameworks (MOFs), have emerged as a fascinating ...
The rational design of microporous membrane materials enables exceptional control over the pore-netw...
© 2017 The Royal Society of Chemistry. In this work, carbonic anhydrase (CA) molecules were embedded...
Nitrogen storage capacity was investigated on a highly efficient adsorbent nanoparticle called Metal...
The advantages of two dimensional covalent organic framework membranes to achieve high flux have bee...
A carbon-dioxide-responsive organic–inorganic nanocomposite membrane based on a through-hole anodic ...