Producción CientíficaSimulations of the hydrogen storage capacities of activated carbons require an accurate treatment of the interaction of a hydrogen molecule physisorbed on the graphitic-like surfaces of nanoporous carbons, which is dominated by the dispersion interactions. These interactions are described accurately by high level quantum chemistry methods such as the Coupled cluster method with single and double excitations and a non-iterative correction for triple excitations (CCSD(T)), but those methods are computationally very expensive for large systems and massive simulations. Density functional theory (DFT) based methods that include dispersion interactions are less accurate, but computationally less expensive. Calculation...
doi: 10.1088/0957-4484/20/20/204026It is shown how appropriately engineered nanoporous carbons provi...
Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surfa...
Molecular hydrogen is at the core of hydrogen energy applications and has the potential to significa...
Producción CientíficaSimulations of the hydrogen storage capacities of nanoporous carbons require an...
Producción CientíficaThe hydrogen storage capacities of nanoporous carbons, simulated as graphene sl...
Nanoporous carbons are among the widely studied and promising materials on hydrogen storage for on-b...
Many methods have been proposed for efficient storage of molecular hydrogen for fuel cell applicatio...
Producción CientíficaGrand Canonical Monte Carlo, GCMC, simulations are used to study the gravimetri...
Grand canonical Monte Carlo (GCMC) simulations were used for the modeling of the hydrogen adsorption...
International audienceCarbon-based materials, due to their low cost and weight, have long been consi...
Producción CientíficaHydrogen is viewed as a possible alternative to the fossil fuels in transportat...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
Theoretical limits of the hydrogen adsorption in carbon nanospaces are modeled using Monte Carlo sim...
A combination of ab-initio and Monte Carlo techniques is used for both, evaluating the hydrogen stor...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
doi: 10.1088/0957-4484/20/20/204026It is shown how appropriately engineered nanoporous carbons provi...
Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surfa...
Molecular hydrogen is at the core of hydrogen energy applications and has the potential to significa...
Producción CientíficaSimulations of the hydrogen storage capacities of nanoporous carbons require an...
Producción CientíficaThe hydrogen storage capacities of nanoporous carbons, simulated as graphene sl...
Nanoporous carbons are among the widely studied and promising materials on hydrogen storage for on-b...
Many methods have been proposed for efficient storage of molecular hydrogen for fuel cell applicatio...
Producción CientíficaGrand Canonical Monte Carlo, GCMC, simulations are used to study the gravimetri...
Grand canonical Monte Carlo (GCMC) simulations were used for the modeling of the hydrogen adsorption...
International audienceCarbon-based materials, due to their low cost and weight, have long been consi...
Producción CientíficaHydrogen is viewed as a possible alternative to the fossil fuels in transportat...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
Theoretical limits of the hydrogen adsorption in carbon nanospaces are modeled using Monte Carlo sim...
A combination of ab-initio and Monte Carlo techniques is used for both, evaluating the hydrogen stor...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
doi: 10.1088/0957-4484/20/20/204026It is shown how appropriately engineered nanoporous carbons provi...
Schwarzites are one of the most well-known forms of nanoporous carbon. High porosity and large surfa...
Molecular hydrogen is at the core of hydrogen energy applications and has the potential to significa...