Title of article :
Interaction of atomic hydrogen with monometallic Au(100), Cu(100), Pt(100) surfaces and surface of bimetallic Au@Cu(100), Au@Pt(100) overlayer systems: The role of magnetism
Author/Authors :
Habibpour, Razieh Department of Chemical Technologies - Iranian Research Organization for Science and Technology, Tehran , Kashi, Eslam Department of Chemical Technologies - Iranian Research Organization for Science and Technology, Tehran
Pages :
10
From page :
209
To page :
218
Abstract :
The spin-polarized calculations in generalized gradient approximation density– functional theory (GGA–DFT) have been used to show how the existence of second metals can modify the atomic hydrogen adsorption on Au (100), Cu (100), and Pt (100) surfaces. The computed adsorption energies for the atomic hydrogen adsorbed at the surface coverage of 0.125 ML (monolayer) for monometallic Au (100), Cu (100), Pt (100) and bimetallic Au@Cu (100) and Au@Pt (100) surfaces are 3.98, 5.06, 4.13, 5.30, and 6.36 eV, respectively. Due to the adsorption of hydrogen atoms, the Au atoms of Au (100), Cu atoms of Cu (100), and Pt atoms of Au@Pt (100) surfaces tend to lose the 6s1, 4s1, and 6s1 electrons and reach the 5d10, 3d10, and 5d9 electronic con gurations, respectively. In Pt (100), Au@Cu (100), and Au@Pt (100) systems, the spin-up and spin-down bands are asymmetric and shift signi cantly in opposite directions. Therefore, they are spin polarized; spin paramagnetism is also observed.
Keywords :
Hydrogen adsorption , Au (100) , Cu (100) , Pt (100) , DFT
Journal title :
Astroparticle Physics
Serial Year :
2017
Record number :
2451551
Link To Document :
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