The metal–organic framework beryllium benzene tribenzoate (Be-BTB) has recently been reported to have one of the highest gravimetric hydrogen uptakes at room temperature. Storage at room temperature is one of the key requirements for the practical viability of hydrogen-powered vehicles. Be-BTB has an exceptional 298 K storage capacity of 2.3 wt % hydrogen. This result is surprising given that the low adsorption enthalpy of 5.5 kJ mol<sup>–1</sup>. In this work, a combination of atomistic simulation and continuum modeling reveals that the beryllium rings contribute strongly to the hydrogen interaction with the framework. These simulations are extended with a thermodynamic energy optimization (TEO) model to compare the performance of Be-BTB t...
This work reports hydrogen adsorption properties of four different metal–organic frameworks (MOFs) n...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Metal-organic frameworks (MOFs) are promising materials for onboard hydrogen storage thanks to the t...
The metal–organic framework beryllium benzene tribenzoate (Be-BTB) has recently been reported to hav...
Gas storage using nanomaterials has been researched as possible enhancement of gas tanks in fuel cel...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Storage is still limiting the implementation of hydrogen as an energy carrier to integrate the inter...
Inconsistencies in high-pressure H2 adsorption data and a lack of comparative experiment–theory stud...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
This dissertation describes the design and synthesis of metal-organic frameworks for applications in...
Hydrogen fuel is attractive to power vehicles without emitting carbon, but onboard storage of suffic...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
This work reports hydrogen adsorption properties of four different metal–organic frameworks (MOFs) n...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Metal-organic frameworks (MOFs) are promising materials for onboard hydrogen storage thanks to the t...
The metal–organic framework beryllium benzene tribenzoate (Be-BTB) has recently been reported to hav...
Gas storage using nanomaterials has been researched as possible enhancement of gas tanks in fuel cel...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
Since the current transportation sector is the largest consumer of oil, and subsequently responsible...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
Storage is still limiting the implementation of hydrogen as an energy carrier to integrate the inter...
Inconsistencies in high-pressure H2 adsorption data and a lack of comparative experiment–theory stud...
Microporous metal–organic frameworks are a class of materials being vigorously investigated for mobi...
This dissertation describes the design and synthesis of metal-organic frameworks for applications in...
Hydrogen fuel is attractive to power vehicles without emitting carbon, but onboard storage of suffic...
Because of their high surface areas, crystallinity, and tunable properties, metal–organic frameworks...
This work reports hydrogen adsorption properties of four different metal–organic frameworks (MOFs) n...
Conventional storage of large amounts of hydrogen in its molecular form is difficult and expensive b...
Metal-organic frameworks (MOFs) are promising materials for onboard hydrogen storage thanks to the t...