Metal–organic frameworks (MOFs) that contain open metal sites have the potential for storing hydrogen (H2) at ambient temperatures. In particular, Cu(I)-based MOFs demonstrate very high isosteric heats of adsorption for hydrogen relative to other reported MOFs with open metal sites. However, most of these Cu(I)-based MOFs are not stable in ambient conditions since the Cu(I) species display sensitivity toward moisture and can rapidly oxidize in air. As a result, researchers have focused on the synthesis of new air-stable Cu(I)-based materials for H2 storage. Here, we have developed a de novo synthetic strategy to generate a robust Cu(I)-based MOF, denoted as NU-2100, using a mixture of Cu/Zn precursors in which zinc acts as a catalyst to tra...
Hydrogen spillover to the Cu-TDPAT (TDPAT = 2,4,6-tris(3,5-dicarboxylphe-nylamino)-1,3,5-triazine) m...
The assembly of organic and inorganic building units into porous crystalline structures has given ri...
Grand canonical Monte Carlo (GCMC) studies of the mechanism of hydrogen sorption in an <i>rht</i>-MO...
Unsaturated metal coordination sites in metal organic frameworks (MOFs) offer preferential hydrogen ...
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...
Hydrogen holds promise as a clean alternative automobile fuel, but its on-board storage presents sig...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Hydrogen (H2) is a promising alternative energy carrier due to its environmental benefits, high ener...
Hydrogen storage capacities of transition metal cation exchanged zeolites; i.e., Cu(I)-SSZ-39 and Cu...
Hydrogen holds promise as a clean alternative automobile fuel, but its on-board storage presents sig...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
Hydrogen is a promising candidate as a replacement of fossil fuels due to its zero-carbon emission u...
Hydrogen spillover to the Cu-TDPAT (TDPAT = 2,4,6-tris(3,5-dicarboxylphe-nylamino)-1,3,5-triazine) m...
The assembly of organic and inorganic building units into porous crystalline structures has given ri...
Grand canonical Monte Carlo (GCMC) studies of the mechanism of hydrogen sorption in an <i>rht</i>-MO...
Unsaturated metal coordination sites in metal organic frameworks (MOFs) offer preferential hydrogen ...
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...
Hydrogen holds promise as a clean alternative automobile fuel, but its on-board storage presents sig...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Hydrogen (H2) is a promising alternative energy carrier due to its environmental benefits, high ener...
Hydrogen storage capacities of transition metal cation exchanged zeolites; i.e., Cu(I)-SSZ-39 and Cu...
Hydrogen holds promise as a clean alternative automobile fuel, but its on-board storage presents sig...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
Hydrogen is a promising candidate as a replacement of fossil fuels due to its zero-carbon emission u...
Hydrogen spillover to the Cu-TDPAT (TDPAT = 2,4,6-tris(3,5-dicarboxylphe-nylamino)-1,3,5-triazine) m...
The assembly of organic and inorganic building units into porous crystalline structures has given ri...
Grand canonical Monte Carlo (GCMC) studies of the mechanism of hydrogen sorption in an <i>rht</i>-MO...