In order to develop new porous materials for applications in gas separations such as natural gas upgrading, landfill gas processing and acetylene purification it is vital to gain understanding of host-substrate interactions at a molecular level. Herein we report a series of six isoreticular metal-organic frameworks (MOFs) for selective gas adsorption. These materials do not incorporate open metal sites and thus provide an excellent platform to investigate the effect of the incorporation of ligand functionality via amide and alkyne groups on substrate binding. By reducing the linker length of our previously reported MFM-136, we report much improved CO2/CH4 (50:50) and CO2/N¬2 (15:85) selectivity values of 20.2 and 65.4, respectively (1 bar a...
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...
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...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
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...
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...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
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...