Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surface area of these materials make them promising candidates for molecular hydrogen storage. Quantum-chemical modeling showed that hydrogen weight fraction inside D-schwarzite structure depends on the number of atoms per unit cell that determines its size and morphology. D480 schwarzite has demonstrated the largest value of hydrogen sorption capacity amongst the structures considered in this work. It reaches 7.65% at the technologically acceptable values of temperature and pressure (300 K and 10 МPа). Though being lower than that required by DOE (9%), this amount can be increased by using schwarzites with larger unit cell corresponding to the la...
International audienceNanoporous carbons remain the most promising candidates for effective hydrogen...
Hydrogen adsorption on porous materials is one of the possible methods proposed for hydrogen storage...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surfa...
International audienceCarbons are one of several promising groups of materials for hydrogen storage ...
Recent developments focusing on novel hydrogen storage media have helped to benchmark nanostructured...
Carbons are one of several promising groups of materials for hydrogen storage by ad-sorption. Here i...
We used Grand canonical Monte Carlo simulation to model the hydrogen storage in the primitive, gyroi...
We used Grand canonical Monte Carlo simulation to model the hydrogen storage in the primitive, gyro...
Nanoporous carbons are among the widely studied and promising materials on hydrogen storage for on-b...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Only abstract of poster available.Track IV: Materials for Energy ApplicationsCarbons are one of seve...
doi: 10.1088/0957-4484/20/20/204026It is shown how appropriately engineered nanoporous carbons provi...
The DOE Hydrogen Sorption Center of Excellence (HSCoE) was formed in 2005 to develop materials for h...
Producción CientíficaSimulations of the hydrogen storage capacities of activated carbons require an ...
International audienceNanoporous carbons remain the most promising candidates for effective hydrogen...
Hydrogen adsorption on porous materials is one of the possible methods proposed for hydrogen storage...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surfa...
International audienceCarbons are one of several promising groups of materials for hydrogen storage ...
Recent developments focusing on novel hydrogen storage media have helped to benchmark nanostructured...
Carbons are one of several promising groups of materials for hydrogen storage by ad-sorption. Here i...
We used Grand canonical Monte Carlo simulation to model the hydrogen storage in the primitive, gyroi...
We used Grand canonical Monte Carlo simulation to model the hydrogen storage in the primitive, gyro...
Nanoporous carbons are among the widely studied and promising materials on hydrogen storage for on-b...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Only abstract of poster available.Track IV: Materials for Energy ApplicationsCarbons are one of seve...
doi: 10.1088/0957-4484/20/20/204026It is shown how appropriately engineered nanoporous carbons provi...
The DOE Hydrogen Sorption Center of Excellence (HSCoE) was formed in 2005 to develop materials for h...
Producción CientíficaSimulations of the hydrogen storage capacities of activated carbons require an ...
International audienceNanoporous carbons remain the most promising candidates for effective hydrogen...
Hydrogen adsorption on porous materials is one of the possible methods proposed for hydrogen storage...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...