AbstractPorous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic quantum sieving (KQS). However, it is challenging to design materials with suitably narrow pores for KQS that also show good adsorption capacities and operate at practical temperatures. Here, we investigate a metal–organic cage (MOC) assembled from organic macrocycles and ZnII ions that exhibits narrow windows (<3.0 Å). Two polymorphs, referred to as 2α and 2β, were observed. Both polymorphs exhibit D2/H2 selectivity in the temperature range 30–100 K. At higher temperature (77 K), the D2 adsorption capacity of 2β increases to about 2.7 times that of 2α, along with a reasonable D2/H2 selectivity. Gas sorption analysis and thermal deso...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...
Deuterium is a crucial clean energy source required for nuclear fusion and is a future resource need...
We use path integral simulations to investigate the separation of H2 and HD, as well as H2 and D2, i...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
The separation of hydrogen isotopes for applications such as nuclear fusion is a major challenge. Cu...
Hydrogen isotope separation with nanoporous materials is a very challenging yet promising approach. ...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Separation of hydrogen isotopes is of great importance to produce highly pure hydrogen isotopes for ...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Highly pure deuterium is an irreplaceable raw material for both industrial and scientific research, ...
In this work, a systematic computational study was performed to investigate the quantum sieving in n...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...
Deuterium is a crucial clean energy source required for nuclear fusion and is a future resource need...
We use path integral simulations to investigate the separation of H2 and HD, as well as H2 and D2, i...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
The separation of hydrogen isotopes for applications such as nuclear fusion is a major challenge. Cu...
Hydrogen isotope separation with nanoporous materials is a very challenging yet promising approach. ...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Separation of hydrogen isotopes is of great importance to produce highly pure hydrogen isotopes for ...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Highly pure deuterium is an irreplaceable raw material for both industrial and scientific research, ...
In this work, a systematic computational study was performed to investigate the quantum sieving in n...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Metal-organic frameworks (MOFs) have attracted great attention in gas storage and separation over th...
Deuterium is a crucial clean energy source required for nuclear fusion and is a future resource need...
We use path integral simulations to investigate the separation of H2 and HD, as well as H2 and D2, i...