While it has long been known that some highly adsorbing microporous materials suddenly become inaccessible to guest molecules below certain temperatures, previous attempts to explain this phenomenon have failed. Here we show that this anomalous sorption behaviour is a temperature-regulated guest admission process, where the pore-keeping group’s thermal fluctuations are influenced by interactions with guest molecules. A physical model is presented to explain the atomic-level chemistry and structure of these thermally regulated micropores, which is crucial to systematic engineering of new functional materials such as tunable molecular sieves, gated membranes and controlled-release nanocontainers. The model was validated experimentally with H2...
The physical limits for methane storage and delivery in nanoporous materials were investigated, with...
The critical temperatures, T-c, of CO2, CH4, and Ar are 304 K, 191 K, and 151 K, respectively. This ...
Advancing a portfolio of technologies that range from the storage of excess renewable natural gas fo...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
International audienceWe discuss the mechanism of the structural transformations of gas adsorbed in ...
Physical adsorption of gas molecules in micro porous materials is an exothermic process, with desorp...
The key requirement for a portable store of natural gas is to maximize the amount of gas within the ...
ABSTRACT: The physical limits for methane storage and delivery in nanoporous materials were investig...
International audienceStructural transformations of nano-systems show properties different from thei...
The proposal of kinetic molecular sieving of hydrogen isotopes is explored by employing statistical ...
The primary objective of this article is to investigate the relative influences of molecular dimensi...
The critical temperatures, Tc, of CO2, CH4 and Ar are 304 K, 191 K and 151 K, respectively. This pap...
International audienceThe key requirement for a portable store of natural gas is to maximize the amo...
The physical limits for methane storage and delivery in nanoporous materials were investigated, with...
The critical temperatures, T-c, of CO2, CH4, and Ar are 304 K, 191 K, and 151 K, respectively. This ...
Advancing a portfolio of technologies that range from the storage of excess renewable natural gas fo...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
While it has long been known that some highly adsorbing microporous materials suddenly become inacce...
International audienceWe discuss the mechanism of the structural transformations of gas adsorbed in ...
Physical adsorption of gas molecules in micro porous materials is an exothermic process, with desorp...
The key requirement for a portable store of natural gas is to maximize the amount of gas within the ...
ABSTRACT: The physical limits for methane storage and delivery in nanoporous materials were investig...
International audienceStructural transformations of nano-systems show properties different from thei...
The proposal of kinetic molecular sieving of hydrogen isotopes is explored by employing statistical ...
The primary objective of this article is to investigate the relative influences of molecular dimensi...
The critical temperatures, Tc, of CO2, CH4 and Ar are 304 K, 191 K and 151 K, respectively. This pap...
International audienceThe key requirement for a portable store of natural gas is to maximize the amo...
The physical limits for methane storage and delivery in nanoporous materials were investigated, with...
The critical temperatures, T-c, of CO2, CH4, and Ar are 304 K, 191 K, and 151 K, respectively. This ...
Advancing a portfolio of technologies that range from the storage of excess renewable natural gas fo...