For the first time, by the application of interference microscopy, direct monitoring of three-dimensional guest diffusion in nanoporous host-guest systems has become possible. The primary experimental evidence accessible using this technique is the integral over the concentration in the direction of observation. In the present letter, an algorithm is presented which provides direct access to the local concentrations. For the system under study, methanol in the silicoaluminophosphate zeotype SAPO STA-7, the intracrystalline concentration evolving during a sorption experiment is calculated by the suggested method and the resulting data is used to determine the concentration dependence of the principal values of the diffusion tensor as...
Diffusion is an omnipresent, most fundamental phenomenon in nature and thus critical for the perform...
Boltzmann’s integration method may prove to be a very powerful tool to study the transport diffusion...
We report here the application of interference microscopy to study intracrystalline diffusion in a b...
For the first time, by the application of interference microscopy, direct monitoring of three-dimens...
The use of interference microscopy has enabled the direct observation of transient concentration pro...
This thesis presents the recent progress of diffusion measurements in nanoporous host systems by mic...
The intense interactions of guest molecules with the pore walls of nanoporous materials is the subje...
Nanoporous host materials giving rise to transient guest profiles of cylindrical symmetry during mol...
The influence of the chemical composition and of the storage and activation protocol on the diffusio...
The application of interference microscopy (IFM) and infrared microscopy (IRM) to monitor the evolut...
Interference microscopy is applied to monitor the evolution of concentration profiles in zeolite cr...
Under certain conditions, during binary mixture adsorption in nanoporous hosts, the concentration of...
The first application of interference microscopy to monitoring mass transfer in nanoporous materials...
The application of interference microscopy has provided an important breakthrough in the study of th...
The intracrystalline concentration profiles evolving during molecular uptake and release by nanoporo...
Diffusion is an omnipresent, most fundamental phenomenon in nature and thus critical for the perform...
Boltzmann’s integration method may prove to be a very powerful tool to study the transport diffusion...
We report here the application of interference microscopy to study intracrystalline diffusion in a b...
For the first time, by the application of interference microscopy, direct monitoring of three-dimens...
The use of interference microscopy has enabled the direct observation of transient concentration pro...
This thesis presents the recent progress of diffusion measurements in nanoporous host systems by mic...
The intense interactions of guest molecules with the pore walls of nanoporous materials is the subje...
Nanoporous host materials giving rise to transient guest profiles of cylindrical symmetry during mol...
The influence of the chemical composition and of the storage and activation protocol on the diffusio...
The application of interference microscopy (IFM) and infrared microscopy (IRM) to monitor the evolut...
Interference microscopy is applied to monitor the evolution of concentration profiles in zeolite cr...
Under certain conditions, during binary mixture adsorption in nanoporous hosts, the concentration of...
The first application of interference microscopy to monitoring mass transfer in nanoporous materials...
The application of interference microscopy has provided an important breakthrough in the study of th...
The intracrystalline concentration profiles evolving during molecular uptake and release by nanoporo...
Diffusion is an omnipresent, most fundamental phenomenon in nature and thus critical for the perform...
Boltzmann’s integration method may prove to be a very powerful tool to study the transport diffusion...
We report here the application of interference microscopy to study intracrystalline diffusion in a b...