First-Principle Study of Adsorption of Hydrogen on Ti-Doped Mg(0001) Surface
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Smith, Sean C
Yao, XD
Lu, GQ
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Abstract
Ab initio density functional theory (DFT) calculations are performed to study the adsorption of H-2 molecules on a Ti-doped Mg(0001) surface. We find that two hydrogen molecules are able to dissociate on top of the Ti atom with very small activation barriers (0.103 and 0.145 eV for the first and second H-2 molecules, respectively). Additionally, a molecular adsorption state of H-2 above the Ti atom is observed for the first time and is attributed to the polarization of the H-2 molecule by the Ti cation. Our results parallel recent findings for H-2 adsorption on Ti-doped carbon nanotubes or fullerenes. They provide new insight into the preliminary stages of hydrogen adsorption onto Ti-incorporated Mg surfaces.
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The Journal of Physical Chemistry B
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110
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43
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Physical sciences
Chemical sciences
Solid state chemistry
Physical properties of materials
Other environmental sciences not elsewhere classified
Engineering