Unsaturated metal coordination sites in metal organic frameworks (MOFs) offer preferential hydrogen adsorption sites. In addition, MOFs can be applied as scaffolds for nano metal hydrides operating at elevated temperatures. For these reasons, the thermal stability of the framework with unsaturated Cu2+ coordination sites in a hydrogen atmosphere has been investigated in Cu3(BTC)2. It is found that Cu3(BTC)2 irreversibly binds 1.1 wt % of hydrogen at the temperatures between 323 and 423 K and 2 bar H2 pressure, which corresponds to three hydrogen atoms per BTC ligand. In accordance, FT-IR and NMR spectroscopy show that the BTC linkers are converted to their acid form, whereas XRD reveals the presence of reduced Cu0 metal particles and decomp...
Microporous metal-organic frameworks possessing exposed metal cation sites on the pore surface are o...
Hydrogen adsorption in high surface area nanoporous coordination polymers has attracted a great deal...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Unsaturated metal coordination sites in metal organic frameworks (MOFs) offer preferential hydrogen ...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
The stability of three metal-organic frameworks (MOFs), namely IRMOF-8, Cu-TDPAT, and Cu-BTC, was te...
Metal–organic frameworks (MOFs) that contain open metal sites have the potential for storing hydroge...
The role of exposed metal sites in increasing the H2 storage performances in metal-organic framework...
Metal organic framework (MOFs) is capable of storing large amount of gases. Cu3(btc)2 is one of the ...
Hydrogen spillover to the Cu-TDPAT (TDPAT = 2,4,6-tris(3,5-dicarboxylphe-nylamino)-1,3,5-triazine) m...
New materials capable of storing hydrogen at high gravimetric and volumetric densities are required ...
Porous metal-organic frameworks (MOFs) have exhibited great potential for gas storage.1 The largest ...
Coordinatively unsaturated metal sites within certain zeolites and metal-organic frameworks can stro...
Hydrogen (H2) is a promising alternative energy carrier due to its environmental benefits, high ener...
Microporous metal-organic frameworks possessing exposed metal cation sites on the pore surface are o...
Hydrogen adsorption in high surface area nanoporous coordination polymers has attracted a great deal...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Unsaturated metal coordination sites in metal organic frameworks (MOFs) offer preferential hydrogen ...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
The stability of three metal-organic frameworks (MOFs), namely IRMOF-8, Cu-TDPAT, and Cu-BTC, was te...
Metal–organic frameworks (MOFs) that contain open metal sites have the potential for storing hydroge...
The role of exposed metal sites in increasing the H2 storage performances in metal-organic framework...
Metal organic framework (MOFs) is capable of storing large amount of gases. Cu3(btc)2 is one of the ...
Hydrogen spillover to the Cu-TDPAT (TDPAT = 2,4,6-tris(3,5-dicarboxylphe-nylamino)-1,3,5-triazine) m...
New materials capable of storing hydrogen at high gravimetric and volumetric densities are required ...
Porous metal-organic frameworks (MOFs) have exhibited great potential for gas storage.1 The largest ...
Coordinatively unsaturated metal sites within certain zeolites and metal-organic frameworks can stro...
Hydrogen (H2) is a promising alternative energy carrier due to its environmental benefits, high ener...
Microporous metal-organic frameworks possessing exposed metal cation sites on the pore surface are o...
Hydrogen adsorption in high surface area nanoporous coordination polymers has attracted a great deal...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...