The effective and efficient storage of hydrogen is one of the key challenges in developing a hydrogen economy. Recently, intensive research has been focused on developing and optimizing metal-based nanomaterials for high-speed, high-capacity, reversible hydrogen storage applications. Notably, the absorption and desorption of hydrogen in nanomaterials is characterized by an atomic, deformation-diffusion coupled process with a time scale of the order of seconds to hours--far beyond the time windows of existing simulation technologies such as Molecular Dynamics (MD) and Monte Carlo (MC) methods. In this work, we present a novel deformation-diffusion coupled computational framework, which allows the long-term simulation of such slow processes a...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
The effective and efficient storage of hydrogen is one of the key challenges in developing a hydroge...
Whereas great strides have been taken towards the characterization of metal-based nanomaterials for ...
Understanding the transport of hydrogen within metals is crucial for the advancement of energy stora...
Understanding the transport of hydrogen within metals is crucial for the advancement of energy stora...
Understanding the transport of hydrogen within metallic nanomaterials is crucial for the advancement...
Understanding the transport of hydrogen within metallic nanomaterials is crucial for the advancement...
In the past two decades, extensive research has been conducted towards developing nanomaterials with...
We present an off-lattice, on-the-fly kinetic Monte Carlo (KMC) model for simulating stress-assisted...
One of the merits of molecular dynamics simulation using classical interatomic potential function is...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
The effective and efficient storage of hydrogen is one of the key challenges in developing a hydroge...
Whereas great strides have been taken towards the characterization of metal-based nanomaterials for ...
Understanding the transport of hydrogen within metals is crucial for the advancement of energy stora...
Understanding the transport of hydrogen within metals is crucial for the advancement of energy stora...
Understanding the transport of hydrogen within metallic nanomaterials is crucial for the advancement...
Understanding the transport of hydrogen within metallic nanomaterials is crucial for the advancement...
In the past two decades, extensive research has been conducted towards developing nanomaterials with...
We present an off-lattice, on-the-fly kinetic Monte Carlo (KMC) model for simulating stress-assisted...
One of the merits of molecular dynamics simulation using classical interatomic potential function is...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...
Abstract. A thermodynamically consistent mathematical model for hydrogen adsorption in metal hydride...