Stable molecular hydrogen isotopes, D2 and T2, are both scarce and essential in several energy, industrial, and large-scale fundamental research applications. Due to the chemical similarity of these isotopes, their extraction and purification from hydrogen has relied for decades on expensive and energy-demanding processes. However, factoring in the phenomenon of quantum sieving could provide a new route for these separations. In this work, we have explored how to separate hydrogen isotopes by adsorption taking these quantum effects into account. To this end, we have conducted adsorption measurements to test our deuterium model and performed a widespread computational screening over 210 pure-silica zeolites for D2/H2 and T2/H2 separations. B...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
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...
We report an ion-exchanged zeolite as an excellent candidate for large-scale application in hydrogen...
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 ...
Using either single H2 and D2 or H2-D2 mixed gases, the sorption abilities of CHA (chabazite)-type z...
AbstractCs-chabazite, a type of zeolite with caesium counter-cations, possesses interesting gas sepa...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Abstract Separating deuterium from hydrogen isotope mixtures is of vital importance to develop nucle...
Porous materials such as zeolites, activated carbon, silica gels, alumina and a number of industrial...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
The adsorption of hydrogen and deuterium (single gases and mixtures) was studied on a series of zeol...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
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...
We report an ion-exchanged zeolite as an excellent candidate for large-scale application in hydrogen...
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 ...
Using either single H2 and D2 or H2-D2 mixed gases, the sorption abilities of CHA (chabazite)-type z...
AbstractCs-chabazite, a type of zeolite with caesium counter-cations, possesses interesting gas sepa...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Abstract Separating deuterium from hydrogen isotope mixtures is of vital importance to develop nucle...
Porous materials such as zeolites, activated carbon, silica gels, alumina and a number of industrial...
Deuterium plays a pivotal role in industrial and scientific research, and is irreplaceable for vario...
The adsorption of hydrogen and deuterium (single gases and mixtures) was studied on a series of zeol...
Recently we reported hydrogen isotope separation by quantum sieving in metal-organic framework MFU-4...
Separating gaseous mixtures that consist of very similar size is one of the critical issues in moder...
Porous materials that contain ultrafine pore apertures can separate hydrogen isotopes via kinetic qu...
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...