A semi-empirical methodology for prediction of hydrogen permeability in metallic amorphous alloys is proposed by combining a thermodynamic calculation and a molecular dynamics simulation. A CALPHAD-type thermodynamic calculation technique is used to calculate hydrogen solubility and thermodynamic factor for hydrogen diffusivity, and a molecular dynamics simulation based on a second nearest-neighbor modified embedded-atom method (2NN MEAM) interatomic potential is used to predict concentration-independent (tracer) diffusivity. The approach is applied to a prediction of hydrogen permeability in amorphous Cu50Zr50 and Cu65Zr35 alloys for which experimental data is available. The predicted permeability is in good agreement with experimental dat...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
We discuss the permeation of hydrogen through metals and alloys such as iron, nicket, steels and Inc...
MasterAmorphous alloys, showing somewhat higher hydrogen permeance than pure crystalline Pd, are per...
A comparative study on hydrogen diffusion in amorphous and simple crystalline structures has been ca...
Dense metal membranes are one useful approach for purifying H<sub>2</sub> from mixed gas streams. A ...
Metal membranes play a vital role in hydrogen purification. Defect-free membranes can exhibit effect...
In der vorliegenden Arbeit wird das Wasserstofflösungsverhalten amorpher Legierungen mit ...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
Hydrogen separation membranes could be an enabling technology in a hydrogen economy. A comprehensive...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
Amorphous metallic membranes display promising properties for hydrogen purification up to an ultrapu...
Amorphous metallic membranes display promising properties for hydrogen purification up to an ultrapu...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
We discuss the permeation of hydrogen through metals and alloys such as iron, nicket, steels and Inc...
MasterAmorphous alloys, showing somewhat higher hydrogen permeance than pure crystalline Pd, are per...
A comparative study on hydrogen diffusion in amorphous and simple crystalline structures has been ca...
Dense metal membranes are one useful approach for purifying H<sub>2</sub> from mixed gas streams. A ...
Metal membranes play a vital role in hydrogen purification. Defect-free membranes can exhibit effect...
In der vorliegenden Arbeit wird das Wasserstofflösungsverhalten amorpher Legierungen mit ...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
Hydrogen separation membranes could be an enabling technology in a hydrogen economy. A comprehensive...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
In the present work, an experimental and theoretical investigation on hydrogen permeation through di...
Amorphous metallic membranes display promising properties for hydrogen purification up to an ultrapu...
Amorphous metallic membranes display promising properties for hydrogen purification up to an ultrapu...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
Pd-Cu is a well-known alloy for H-2 separation membranes. Using a new optical combinatorial method w...
We discuss the permeation of hydrogen through metals and alloys such as iron, nicket, steels and Inc...