(Graph Presented). Here we report direct physical evidence that confinement of molecular hydrogen (H2) in an optimized nanoporous carbon results in accumulation of hydrogen with characteristics commensurate with solid H2 at temperatures up to 67 K above the liquid-vapor critical temperature of bulk H2. This extreme densification is attributed to confinement of H2 molecules in the optimally sized micropores, and occurs at pressures as low as 0.02 MPa. The quantities of contained, solid-like H2 increased with pressure and were directly evaluated using in situ inelastic neutron scattering and confirmed by analysis of gas sorption isotherms. The demonstration of the existence of solid-like H2 challenges the existing assumption that supercritica...
Carbons are one of several promising groups of materials for hydrogen storage by ad-sorption. Here i...
Dataset for Direct Evidence for Solid-Like Hydrogen in a Nanoporous Carbon Hydrogen Storage Material...
There is much current interest in the storage of hydrogen in porous materials for mobile energy appl...
Here we report direct physical evidence that confinement of molecular hydrogen (H<sub>2</sub>) in an...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
International audienceIn response to the DOE’s quest for sorption-based hydrogen storage materials t...
International audienceThe search for sustainable automotive fuels has driven numerous studies of sor...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
International audienceWe simulated the low temperature (T = 77 K) hydrogen adsorption in carbon slit...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Our investigations into molecular hydrogen (H2) confined in microporous carbons with different pore ...
International audienceCarbons are one of several promising groups of materials for hydrogen storage ...
Carbons are one of several promising groups of materials for hydrogen storage by ad-sorption. Here i...
Dataset for Direct Evidence for Solid-Like Hydrogen in a Nanoporous Carbon Hydrogen Storage Material...
There is much current interest in the storage of hydrogen in porous materials for mobile energy appl...
Here we report direct physical evidence that confinement of molecular hydrogen (H<sub>2</sub>) in an...
Here we report direct physical evidence that confinement of molecular hydrogen (H-2) in an optimized...
International audienceIn response to the DOE’s quest for sorption-based hydrogen storage materials t...
International audienceThe search for sustainable automotive fuels has driven numerous studies of sor...
International audienceHydrogen is very likely the ultimate future of the energetic economy of the wo...
International audienceWe simulated the low temperature (T = 77 K) hydrogen adsorption in carbon slit...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Our investigations into molecular hydrogen (H2) confined in microporous carbons with different pore ...
International audienceCarbons are one of several promising groups of materials for hydrogen storage ...
Carbons are one of several promising groups of materials for hydrogen storage by ad-sorption. Here i...
Dataset for Direct Evidence for Solid-Like Hydrogen in a Nanoporous Carbon Hydrogen Storage Material...
There is much current interest in the storage of hydrogen in porous materials for mobile energy appl...