Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design of improved gas storage materials. Here we report the binding domains of carbon dioxide and acetylene in a tetra-amide functionalized metal-organic framework, MFM-188, at crystallographic resolution. Although exhibiting moderate porosity, desolvated MFM-188a exhibits exceptionally high carbon dioxide and acetylene adsorption uptakes with the latter (232 cm3 g−1 at 295 K and 1 bar) being the highest value observed for porous solids under these conditions to the best of our knowledge. Neutron diffraction and inelastic neutron scattering studies enable the direct observation of the role of amide groups in substrate binding, representing an examp...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
An amide-functionalized metal organic framework (MOF) material, MFM-136, shows a high CO2 uptake of ...
An amide-functionalized metal organic framework (MOF) material, MFM-136, shows a high CO2 uptake of ...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
An amide-functionalized metal organic framework (MOF) material, MFM-136, shows a high CO2 uptake of ...
An amide-functionalized metal organic framework (MOF) material, MFM-136, shows a high CO2 uptake of ...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
An amide-functionalised metal organic frame-work (MOF) material, MFM-136, shows a high CO2 uptake of...
In order to develop new porous materials for applications in gas separations such as natural gas upg...