Nanoporous materials have the potential to be used as molecular sieves to separate chemical substances in a mixture via selective adsorption and kinetic sieving. The separation of isotopologues is also possible via the so-called quantum sieving effect: the different effective size of isotopologues due to their different Zero Point Energy (ZPE). Here we compare the diffusion coefficients of Hydrogen and Deuterium in (8,0) Single Walled Carbon Nanotubes obtained with quantum dynamics simulations. The diffusion channels obtained present important contributions from resonances connecting the potential wells. These resonances, which are more important for H2 than for D2, increase the low-temperature diffusivity of both isotopologues, but prevent...
We report quasielastic neutron scattering studies of H2-D2 diffusion in a carbon molecular sieve, de...
We present quantum dynamics calculations of the diffusion constant of H<sub>2</sub> and D<sub>2</sub...
Mondelo-Martell M, Huarte-Larranaga F, Manthe U. Quantum dynamics of H-2 in a carbon nanotube: Separ...
We present quantum dynamics calculations of the diffusion constant of H2 and D2 along a single-walle...
We report kinetic molecular sieving of hydrogen and deuterium in zeolite rho at low temperatures, us...
We use path integral simulations to investigate the separation of H2 and HD, as well as H2 and D2, i...
We study the quantum molecular sieving of H2 and D2 through two nanotubes placed end-to-end. An anal...
We use path integral simulations to investigate the separation of H-2 and HD, as well as H-2 and D-2...
Quasi-one-dimensional cylindrical pores of single-walled boron nitride and carbon nanotubes efficien...
Quasi-one-dimensional cylindrical pores of single-walled boron nitride and carbon nanotubes efficien...
We present diffusion Monte Carlo calculations of D2 adsorbed inside a narrow carbon nanotube. The on...
The theory of molecular sieving has long been a subject of importance because of its widespread tec...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Quantum confinement effects are known to affect the behavior of molecules adsorbed in nanostructured...
We report quasielastic neutron scattering studies of H2-D2 diffusion in a carbon molecular sieve, de...
We present quantum dynamics calculations of the diffusion constant of H<sub>2</sub> and D<sub>2</sub...
Mondelo-Martell M, Huarte-Larranaga F, Manthe U. Quantum dynamics of H-2 in a carbon nanotube: Separ...
We present quantum dynamics calculations of the diffusion constant of H2 and D2 along a single-walle...
We report kinetic molecular sieving of hydrogen and deuterium in zeolite rho at low temperatures, us...
We use path integral simulations to investigate the separation of H2 and HD, as well as H2 and D2, i...
We study the quantum molecular sieving of H2 and D2 through two nanotubes placed end-to-end. An anal...
We use path integral simulations to investigate the separation of H-2 and HD, as well as H-2 and D-2...
Quasi-one-dimensional cylindrical pores of single-walled boron nitride and carbon nanotubes efficien...
Quasi-one-dimensional cylindrical pores of single-walled boron nitride and carbon nanotubes efficien...
We present diffusion Monte Carlo calculations of D2 adsorbed inside a narrow carbon nanotube. The on...
The theory of molecular sieving has long been a subject of importance because of its widespread tec...
One of the greatest challenges of modern separation technology is separating isotope mixtures in hig...
Deuterium is widely used for numerous applications such as nuclear fusion, non-radioactive isotopic ...
Quantum confinement effects are known to affect the behavior of molecules adsorbed in nanostructured...
We report quasielastic neutron scattering studies of H2-D2 diffusion in a carbon molecular sieve, de...
We present quantum dynamics calculations of the diffusion constant of H<sub>2</sub> and D<sub>2</sub...
Mondelo-Martell M, Huarte-Larranaga F, Manthe U. Quantum dynamics of H-2 in a carbon nanotube: Separ...