Two porous metal organic frameworks (MOFs), [M-2(C8H2O6)(H2O)(2)] center dot 8H(2)O (M = Co, Ni), perform exceptionally well for the adsorption, storage, and water-triggered delivery of the biologically important gas nitric oxide. Adsorption and powder X-ray diffraction studies indicate that each coordinatively unsaturated metal atom in the structure coordinates to one NO molecule. All of the stored gas is available for delivery even after the material has been stored for several months. The combination of extremely high adsorption capacity (similar to 7 mmol of NO/g of MOF) and good storage stability is ideal for the preparation of NO storage solids. However, most important is that the entire reservoir of stored gas is recoverable on conta...
Metal Organic Frameworks (MOFs) are a class of porous materials with highly desirable properties tha...
Gas adsorption experiments have been carried out on a copper benzene tricarboxylate metal-organic fr...
As a new type of nano porous material, Metal-Organic Frameworks (MOFs) have been rapidly developed f...
The aim of this thesis was to examine the ability of metal organic frameworks (MOFs) to store and co...
The room temperature sorption properties of the biological gas nitric oxide (NO) have been investiga...
Adsorption and release of the biologically active nitric oxide (NO) was evaluated over a series of h...
Metal organic frameworks (MOFs) are highly porous materials that can store significant amounts of ga...
The aim of the research presented in this thesis is to investigate and develop novel nitric oxide (N...
Air pollution by nitrogen oxides, NOx, is a major problem, and new capture and abatement technologie...
International audienceMaterials for the controlled release of nitric oxide (NO) are of interest for ...
Metal-organic frameworks (MOFs) are well known for their ability to adsorb various gases. The use of...
Air pollution by nitrogen oxides, NOx, is a major problem, and new capture and abatement technologie...
Metal Organic Frameworks (MOFs) are a class of porous materials with highly desirable properties tha...
Gas adsorption experiments have been carried out on a copper benzene tricarboxylate metal-organic fr...
As a new type of nano porous material, Metal-Organic Frameworks (MOFs) have been rapidly developed f...
The aim of this thesis was to examine the ability of metal organic frameworks (MOFs) to store and co...
The room temperature sorption properties of the biological gas nitric oxide (NO) have been investiga...
Adsorption and release of the biologically active nitric oxide (NO) was evaluated over a series of h...
Metal organic frameworks (MOFs) are highly porous materials that can store significant amounts of ga...
The aim of the research presented in this thesis is to investigate and develop novel nitric oxide (N...
Air pollution by nitrogen oxides, NOx, is a major problem, and new capture and abatement technologie...
International audienceMaterials for the controlled release of nitric oxide (NO) are of interest for ...
Metal-organic frameworks (MOFs) are well known for their ability to adsorb various gases. The use of...
Air pollution by nitrogen oxides, NOx, is a major problem, and new capture and abatement technologie...
Metal Organic Frameworks (MOFs) are a class of porous materials with highly desirable properties tha...
Gas adsorption experiments have been carried out on a copper benzene tricarboxylate metal-organic fr...
As a new type of nano porous material, Metal-Organic Frameworks (MOFs) have been rapidly developed f...