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Hydrogen storage is still one of the most important
problem for hydrogen energy, this problem has been resolved
highly by using carbon based materials in recent years. Carbon
nanotubes have been targeted by coating with various adsorbent
materials, transition metals and some compounds to realize this
storage at maximum level. In this study, alumina doped multiwalled carbon nanotubes were synthesized. The characteristics,
polarizations and thermal properties of the synthesized
nanotubes have been investigated. It was observed that the bonds
of the nanotubes, with the alumina addiction, surface area
increased and the hydrogen storage was realized at higher level.
Hydrogen energy was stored to the carbon nanotubes, in which
surface areas modified by alumina addiction was investigated. As
a result, it is seen that alumina doped multi-walled carbon
nanotubes will be useful in the field of hydrogen storage and can
be used efficiently in this area.
1.st International Conference Energy Systems Engineering
ıcese'17
Songül Kaskun
Muhammet Kayfec