Porous organic cage molecules are fabricated into thin films and molecular-sieving membranes. Cage molecules are solution cast on various substrates to form amorphous thin films, with the structures tuned by tailoring the cage chemistry and processing conditions. For the first time, uniform and pinhole-free microporous cage thin films are formed and demonstrated as molecular-sieving membranes for selective gas separation
Advanced material engineering gave rise to cutting-edge characteristics of sustainable separation by...
A [2 + 3] organic cage compound based on the condensation reaction of 1,3,5-tri(4-formylphenyl)benze...
This research tackles the challenge of synthesising a highly porous material, known as a covalent or...
Porous organic cage molecules are fabricated into thin films and molecular‐sieving membranes. Cage m...
Membranes with high selectivity offer an attractive route to molecular separations, where technologi...
Porous materials are important in a wide range of applications including molecular separations and c...
Membranes with excellent permeance and high selectivity offer an attractive route to molecular separ...
The goal of this project was to develop a novel technology that may be used to eventually manufactur...
Microporous polymers of extreme rigidity are required for gas-separation membranes that combine high...
Summary: Polymeric membranes with precise molecular weight cutoffs are necessary for molecular separ...
Highlight ReviewSolids composed of shape-persistent organic cage molecules are an emerging class of ...
The seed film method for synthesis of ultra thin and thin molecular sieve films was developed. The v...
Membrane defines as the barrier. Membrane used to filter the gaseous. Membranes can take many forms,...
Our long-term goal is to synthesize defect-free thin film membranes with crystalline inorganic molec...
Our long-term goal is to synthesize defect-free thin film membranes with crystalline inorganic molec...
Advanced material engineering gave rise to cutting-edge characteristics of sustainable separation by...
A [2 + 3] organic cage compound based on the condensation reaction of 1,3,5-tri(4-formylphenyl)benze...
This research tackles the challenge of synthesising a highly porous material, known as a covalent or...
Porous organic cage molecules are fabricated into thin films and molecular‐sieving membranes. Cage m...
Membranes with high selectivity offer an attractive route to molecular separations, where technologi...
Porous materials are important in a wide range of applications including molecular separations and c...
Membranes with excellent permeance and high selectivity offer an attractive route to molecular separ...
The goal of this project was to develop a novel technology that may be used to eventually manufactur...
Microporous polymers of extreme rigidity are required for gas-separation membranes that combine high...
Summary: Polymeric membranes with precise molecular weight cutoffs are necessary for molecular separ...
Highlight ReviewSolids composed of shape-persistent organic cage molecules are an emerging class of ...
The seed film method for synthesis of ultra thin and thin molecular sieve films was developed. The v...
Membrane defines as the barrier. Membrane used to filter the gaseous. Membranes can take many forms,...
Our long-term goal is to synthesize defect-free thin film membranes with crystalline inorganic molec...
Our long-term goal is to synthesize defect-free thin film membranes with crystalline inorganic molec...
Advanced material engineering gave rise to cutting-edge characteristics of sustainable separation by...
A [2 + 3] organic cage compound based on the condensation reaction of 1,3,5-tri(4-formylphenyl)benze...
This research tackles the challenge of synthesising a highly porous material, known as a covalent or...