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The hydrogen uptake mechanism of the modified CNTs was discussed.
Table 5 also shows that, using microemulsion considerably increased the hydrogen uptake and percentage dispersion.
The samples with the most homogeneous Ni distribution exhibited the highest hydrogen uptake capacity.
As shown, using microemulsion considerably increased the hydrogen uptake and percentage of dispersion.
The main hardening effect found in this study was derived from hydrogen uptake.
The reported hydrogen uptake of carbon nanotubes (CNTs) has been the subject of much controversy.
GCMC calculations are employed to obtain the hydrogen uptake at different thermodynamic conditions.
The results obtained demonstrate that the combination of different approaches can improve the hydrogen uptake significantly.
These results may be helpful in designing and synthesizing new ZIFs with higher hydrogen uptake capability.
The Ir– and Rh SiO2 nano-hollows exhibited excess hydrogen uptake.
The correlation of maximum hydrogen uptake with surface area and micropore volume was investigated.
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