Hydrogen storage in carbon materials can be increased by hydrogen spillover from a supported catalyst; a systematic investigation of various carbon supports was used to better understand how hydrogen spillover affects hydrogen storage on carbon materials. Secondary spillover experiments effectively eliminated experimental variables associated with primary spillover, evidenced by materials clustering around the carbon type for a variety of supported catalyst-carbon mixtures. Providing a supported catalyst to act as a hydrogen source enhances the overall hydrogen uptake of a carbon material; for example, simple mixing of carbon nanotubes with supported palladium increased the uptake of the carbons by a factor of three. However, the baseline a...
Solid-phase hydrogenation kinetics can be substantially increased by utilizing hydrogen spillover ph...
The goal of this project was to develop new nanostructured sorbent materials, using the hydrogen spi...
Carbon nanocones are the fifth equilibrium structure of carbon, first synthesized in 1997. They have...
Hydrogen storage in carbon materials can be increased by hydrogen spillover from a supported catalys...
Hydrogen is an attractive energy option because of its lowenvironmental impact, but a critical probl...
Hydrogen storage in carbon nanomaterials was enhanced through hydrogen spillover. Carbon nanomateria...
Hydrogen spillover has emerged as a possible technique for achieving high-density hydrogen storage a...
Hydrogen storage in nanoporous materials can be increased by hydrogen spillover from a supported cat...
A model of hydrogen spillover that provides a mechanistic understanding of the resulting surface con...
Hydrogen storage on multiwalled nanotubes (MWNTs) was dependent on the degree of catalyst removal. A...
Carbon metal synergy in the form of hydrogen spillover can significantly increase the uptake of a ca...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Hydrogen spillover refers to catalytic dissociation of hydrogen molecules followed by surface diffus...
The hydrogen spillover mechanism has been discussed in the field of hydrogen storage and is believed...
Experiments have shown that the efficiency of nanoporous carbons to store hydrogen becomes enhanced ...
Solid-phase hydrogenation kinetics can be substantially increased by utilizing hydrogen spillover ph...
The goal of this project was to develop new nanostructured sorbent materials, using the hydrogen spi...
Carbon nanocones are the fifth equilibrium structure of carbon, first synthesized in 1997. They have...
Hydrogen storage in carbon materials can be increased by hydrogen spillover from a supported catalys...
Hydrogen is an attractive energy option because of its lowenvironmental impact, but a critical probl...
Hydrogen storage in carbon nanomaterials was enhanced through hydrogen spillover. Carbon nanomateria...
Hydrogen spillover has emerged as a possible technique for achieving high-density hydrogen storage a...
Hydrogen storage in nanoporous materials can be increased by hydrogen spillover from a supported cat...
A model of hydrogen spillover that provides a mechanistic understanding of the resulting surface con...
Hydrogen storage on multiwalled nanotubes (MWNTs) was dependent on the degree of catalyst removal. A...
Carbon metal synergy in the form of hydrogen spillover can significantly increase the uptake of a ca...
Hydrogen storage materials based on the hydrogen spillover mechanism onto metal-doped nanoporous car...
Hydrogen spillover refers to catalytic dissociation of hydrogen molecules followed by surface diffus...
The hydrogen spillover mechanism has been discussed in the field of hydrogen storage and is believed...
Experiments have shown that the efficiency of nanoporous carbons to store hydrogen becomes enhanced ...
Solid-phase hydrogenation kinetics can be substantially increased by utilizing hydrogen spillover ph...
The goal of this project was to develop new nanostructured sorbent materials, using the hydrogen spi...
Carbon nanocones are the fifth equilibrium structure of carbon, first synthesized in 1997. They have...