First-Principles Study on H2 Adsorption and Dissociation on Cu (111) Surface
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Graphical Abstract
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Abstract
The interactions of hydrogen molecules (H2) and the Cu (111) surface have been studied by using density functional theory based first-principles calculations. The results show that the dissociation of H2 depends mainly on the initial distance from H2 to the surface (hH) and the initial H2 configurations. The H2 molecules of vertical adsorption on Cu (111) are not dissociated for the initial hH of 0.3-4.0 Å, and the undissociated H2 is physically adsorbed on the Cu (111) surface. When H2 molecules are adsorbed on Cu (111) surface in parallel, some of the H2 are dissociated into two hydrogen atoms, which occupy hcp and fcc sites and form stable chemisorption on the Cu (111) surface. The critical distance of H2 dissociation at bri sites is 1.35 Å for parallel adsorption along the211 direction and 0.65-0.86 Å for other cases.
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