We have studied the diffusive mobility of hydrogen molecules confined in different size cages in clathrate hydrates. In clathrate hydrate H2 molecules are effectively stored by confinement in two different size cages of the nano porous host structure with accessible volumes of about 0.50 and 0.67 nm diameters, respectively. For the processes of sorption and desorption of the stored hydrogen the diffusive mobility of the molecules plays a fundamental role. In the present study we have focused on the dynamics of the H2 molecules inside the cages as one aspect of global guest molecule mobility across the crystalline host structure. We have found that for the two cage sizes different in diameter by only 34 and in volume by about a factor of 2...
Hydrates of gas are non-stoichiometric inclusion compounds constituted of water and gas. Therein, th...
The cage occupancy of hydrogen clathrate hydrate has been examined by grand canonical Monte Carlo (G...
In the current work we present a significant advancement in the area of hydrogen storage in clathrat...
In porous materials the molecular confinement is often realized by means of weak Van der Waals inter...
In porous materials the molecular confinement is often realized by means of weak Van der Waals inter...
The lack of practical methods for hydrogen storage is still a major bottleneck in the realization of...
We present an extensive study of the quantum dynamics of molecular hydrogen trapped within the nanoc...
In this article, computational studies of hydrogen storage in clathrate hydrate phases are reviewed....
As the energy resources running out, scientists are trying to provide sustainable energy. They move ...
Classical equilibrium molecular dynamics(MD) simulations have been performed to investigate dynamica...
The hydrogen storage capacity in the clathrate hydrate was studied by ab initio calculations and ab ...
Despite relevance to potential use as environmentally friendly hydrogen storage materials, major gap...
Structure, stability, and reactivity of clathrate hydrates with or without hydrogen encapsulation ar...
Clathrate hydrates are nonstoichiometric crystalline inclusion compounds in which a water host latti...
We present an extensive study of the quantum dynamics of molecular hydrogen trapped within the nanoc...
Hydrates of gas are non-stoichiometric inclusion compounds constituted of water and gas. Therein, th...
The cage occupancy of hydrogen clathrate hydrate has been examined by grand canonical Monte Carlo (G...
In the current work we present a significant advancement in the area of hydrogen storage in clathrat...
In porous materials the molecular confinement is often realized by means of weak Van der Waals inter...
In porous materials the molecular confinement is often realized by means of weak Van der Waals inter...
The lack of practical methods for hydrogen storage is still a major bottleneck in the realization of...
We present an extensive study of the quantum dynamics of molecular hydrogen trapped within the nanoc...
In this article, computational studies of hydrogen storage in clathrate hydrate phases are reviewed....
As the energy resources running out, scientists are trying to provide sustainable energy. They move ...
Classical equilibrium molecular dynamics(MD) simulations have been performed to investigate dynamica...
The hydrogen storage capacity in the clathrate hydrate was studied by ab initio calculations and ab ...
Despite relevance to potential use as environmentally friendly hydrogen storage materials, major gap...
Structure, stability, and reactivity of clathrate hydrates with or without hydrogen encapsulation ar...
Clathrate hydrates are nonstoichiometric crystalline inclusion compounds in which a water host latti...
We present an extensive study of the quantum dynamics of molecular hydrogen trapped within the nanoc...
Hydrates of gas are non-stoichiometric inclusion compounds constituted of water and gas. Therein, th...
The cage occupancy of hydrogen clathrate hydrate has been examined by grand canonical Monte Carlo (G...
In the current work we present a significant advancement in the area of hydrogen storage in clathrat...