Separation of hydrogen isotopes is of great importance to produce highly pure hydrogen isotopes for numerous applications, which is however very difficult because of their almost identical thermodynamic properties. Adsorptive separation is considered as a simple, highly efficient, and cost-effective technique compared to the traditional methods, where the key is the suitable adsorbent. Herein, SIFSIX-3-Zn was screened out from the reported metal–organic frameworks (MOFs), exhibiting high selectivities for a D2/H2 mixture by quantum sieving effect. Advanced cryogenic thermal desorption spectroscopy confirms the calculation results, indicating that the selectivities for a 1:1 D2/H2 mixture at 20 K are larger than the values reported so far; e...
Stable molecular hydrogen isotopes, D2 and T2, are both scarce and essential in several energy, indu...
Hydrogen (H-2) has been receiving considerable attention as a promising future energy source owing t...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
Hydrogen isotope separation with nanoporous materials is a very challenging yet promising approach. ...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Highly pure deuterium is an irreplaceable raw material for both industrial and scientific research, ...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
AbstractPorous materials that contain ultrafine pore apertures can separate hydrogen isotopes via ki...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
The quantum sieving effect between D2 and H2 is examined for a series of metal–organic frameworks (M...
Hydrogen isotope mixtures can be separated either by confinement in small pores [i.e., "kinetic...
In this work, a systematic computational study was performed to investigate the quantum sieving in n...
Stable molecular hydrogen isotopes, D2 and T2, are both scarce and essential in several energy, indu...
Hydrogen (H-2) has been receiving considerable attention as a promising future energy source owing t...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
Hydrogen isotope separation with nanoporous materials is a very challenging yet promising approach. ...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Highly pure deuterium is an irreplaceable raw material for both industrial and scientific research, ...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
AbstractPorous materials that contain ultrafine pore apertures can separate hydrogen isotopes via ki...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
The quantum sieving effect between D2 and H2 is examined for a series of metal–organic frameworks (M...
Hydrogen isotope mixtures can be separated either by confinement in small pores [i.e., "kinetic...
In this work, a systematic computational study was performed to investigate the quantum sieving in n...
Stable molecular hydrogen isotopes, D2 and T2, are both scarce and essential in several energy, indu...
Hydrogen (H-2) has been receiving considerable attention as a promising future energy source owing t...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...