In situ high pressure <sup>129</sup>Xe NMR spectroscopy in combination with volumetric adsorption measurements were used for the textural characterization of different carbon materials with well-defined porosity including microporous carbide-derived carbons, ordered mesoporous carbide-derived carbon, and ordered mesoporous CMK-3. Adsorption/desorption isotherms were measured also by NMR up to relative pressures close to <i>p</i>/<i>p</i><sub>0</sub> = 1 at 237 K. The <sup>129</sup>Xe NMR chemical shift of xenon adsorbed in porous carbons is found to be correlated with the pore size in analogy to other materials such as zeolites. In addition, these measurements were performed loading the samples with <i>n</i>-nonane. Nonane molecules prefere...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...
The primary objective of this project is to use {sup 129}Xe NMR to characterize the microporous stru...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...
In situ high pressure 129Xe NMR spectroscopy in combination with volumetric adsorption measurements ...
Despite the extensive use of 129Xe NMR for characterization of high surface-to-volume porous solids,...
Porous Carbon Blacks with specific surfaces of up to 1475 m²/g were examined and characterized by 12...
The existence of micropores and the change of surface structure in pitch-based hard-carbon in xenon ...
In this publication we report the first application of continuous flow hyperpolarized (HP) 129Xe tec...
The existence of micropores and the change of surface structure in pitch-based hard-carbon in xenon ...
Abstract Geopolymers are alumino-silicates with inborn mesoporous structures. For construction appli...
A large number of functional and catalytic materials exhibit porosity, often on different length sca...
Abstract ¹²⁹Xe NMR of adsorbed xenon gas is a sensitive tool for the characterization of porous mat...
129Xe NMR spectra of natural abundant xenon gas trapped in fully dehydrated mesoporous materials wit...
129Xe NMR spectra of natural abundant xenon gas trapped in fully dehydrated mesoporous materials wit...
Flexible metal-organic frameworks (MOFs) are capable of changing their crystal structure as a functi...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...
The primary objective of this project is to use {sup 129}Xe NMR to characterize the microporous stru...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...
In situ high pressure 129Xe NMR spectroscopy in combination with volumetric adsorption measurements ...
Despite the extensive use of 129Xe NMR for characterization of high surface-to-volume porous solids,...
Porous Carbon Blacks with specific surfaces of up to 1475 m²/g were examined and characterized by 12...
The existence of micropores and the change of surface structure in pitch-based hard-carbon in xenon ...
In this publication we report the first application of continuous flow hyperpolarized (HP) 129Xe tec...
The existence of micropores and the change of surface structure in pitch-based hard-carbon in xenon ...
Abstract Geopolymers are alumino-silicates with inborn mesoporous structures. For construction appli...
A large number of functional and catalytic materials exhibit porosity, often on different length sca...
Abstract ¹²⁹Xe NMR of adsorbed xenon gas is a sensitive tool for the characterization of porous mat...
129Xe NMR spectra of natural abundant xenon gas trapped in fully dehydrated mesoporous materials wit...
129Xe NMR spectra of natural abundant xenon gas trapped in fully dehydrated mesoporous materials wit...
Flexible metal-organic frameworks (MOFs) are capable of changing their crystal structure as a functi...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...
The primary objective of this project is to use {sup 129}Xe NMR to characterize the microporous stru...
The primary objective of this work is to use {sup 129}Xe NMR to characterize the microporous structu...