Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive because it requires employing either extremely high pressure gas or very low temperature liquid. Because of the importance of hydrogen as a fuel, the DOE has set system targets for hydrogen storage of gravimetric (5.5 wt%) and volumetric (40 g L-1) densities to be achieved by 2015. Given that these are system goals, a practical material will need to have higher capacity when the weight of the tank and associated cooling or regeneration system is considered. The size and weight of these components will vary substantially depending on whether the material operates by a chemisorption or physisorption mechanism. In the latter case, metal-organic f...
Experimental hydrogen isotherms on several metal-organic frameworks (IRMOF-1, IRMOF-3, IRMOF-9, ZIF-...
One of the strategic goals of seeking for renewable energy sources/carriers that are clean and abund...
This final technical report summarizes work exploring strategies to generate second generation metal...
Hydrogen can be a promising clean energy carrier for the replenishment of non-renewable fossil fuels...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Nanoporous adsorbents are a diverse category of solid-state materials that hold considerable promise...
We have examined a number of Metal Organic Framework Materials for their potential in hydrogen stora...
Currently, the metal-organic frameworks (MOF s) are considered among the most promising materials fo...
Metal-organic frameworks (MOFs) are promising materials for onboard hydrogen storage thanks to the t...
Metal-organic frameworks (MOFs) are highly attractive materials because of their ultra-high surface ...
Current methods for storing molecular hydrogen require extremely high pressures or very low temperat...
Storage is still limiting the implementation of hydrogen as an energy carrier to integrate the inter...
New materials capable of storing hydrogen at high gravimetric and volumetric densities are required ...
Statement of Objectives: 1. Synthesize viable porous MOFs for high H2 storage at ambient conditions ...
Experimental hydrogen isotherms on several metal-organic frameworks (IRMOF-1, IRMOF-3, IRMOF-9, ZIF-...
One of the strategic goals of seeking for renewable energy sources/carriers that are clean and abund...
This final technical report summarizes work exploring strategies to generate second generation metal...
Hydrogen can be a promising clean energy carrier for the replenishment of non-renewable fossil fuels...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Materials exhibiting reversible hydrogen adsorption with high gravimetric and volumetric capacities ...
Nanoporous adsorbents are a diverse category of solid-state materials that hold considerable promise...
We have examined a number of Metal Organic Framework Materials for their potential in hydrogen stora...
Currently, the metal-organic frameworks (MOF s) are considered among the most promising materials fo...
Metal-organic frameworks (MOFs) are promising materials for onboard hydrogen storage thanks to the t...
Metal-organic frameworks (MOFs) are highly attractive materials because of their ultra-high surface ...
Current methods for storing molecular hydrogen require extremely high pressures or very low temperat...
Storage is still limiting the implementation of hydrogen as an energy carrier to integrate the inter...
New materials capable of storing hydrogen at high gravimetric and volumetric densities are required ...
Statement of Objectives: 1. Synthesize viable porous MOFs for high H2 storage at ambient conditions ...
Experimental hydrogen isotherms on several metal-organic frameworks (IRMOF-1, IRMOF-3, IRMOF-9, ZIF-...
One of the strategic goals of seeking for renewable energy sources/carriers that are clean and abund...
This final technical report summarizes work exploring strategies to generate second generation metal...