First principles studies for the interaction of hydrogen with a Li(100) surface

We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the potential energy surfaces (PESs) for H2 and the potential energy curves (PECs) for H at symmetric sites on a Li(100) surface within the density functional theory. The PESs results show the dependence of...

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Main Authors: Arboleda, Nelson B., Jr., Nobuhara, Kunihiro, Kasai, Hideaki, Dino, Wilson Agerico, Nakanishi, Hiroshi
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Published: Animo Repository 2005
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https://animorepository.dlsu.edu.ph/context/faculty_research/article/2255/type/native/viewcontent
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-22552022-08-30T03:42:44Z First principles studies for the interaction of hydrogen with a Li(100) surface Arboleda, Nelson B., Jr. Nobuhara, Kunihiro Kasai, Hideaki Dino, Wilson Agerico Nakanishi, Hiroshi We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the potential energy surfaces (PESs) for H2 and the potential energy curves (PECs) for H at symmetric sites on a Li(100) surface within the density functional theory. The PESs results show the dependence of the energy barriers for H2 dissociative adsorption and the stable adsorption sites for the dissociated H atoms on the H2 center-of-mass (CM) position and the H2 orientation relative to the surface. Also, reaction paths for the direct absorption of H2 can be seen when the H2 CM is directly above the bridge site of the Li(100) surface. Meanwhile, the PECs results indicate that the energy barriers for H absorption and the stable H adsorption sites depend on the H lateral position relative to the surface. A very low energy barrier was observed for H absorption on the bridge site of the surface. Finally, we present a practical explanation of the PESs' and PECs' dependence on the H2 position and orientation relative to the surface from the interaction between the electrons of hydrogen and of the substrate atoms, as well as from the lattice structure of the substrate. ©2005 The Physical Society of Japan. 2005-01-01T08:00:00Z text text/html https://animorepository.dlsu.edu.ph/faculty_research/1256 https://animorepository.dlsu.edu.ph/context/faculty_research/article/2255/type/native/viewcontent Faculty Research Work Animo Repository Absorption Hydrogen Lithium Density functionals Dissociation Potential energy surfaces Physics
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Absorption
Hydrogen
Lithium
Density functionals
Dissociation
Potential energy surfaces
Physics
spellingShingle Absorption
Hydrogen
Lithium
Density functionals
Dissociation
Potential energy surfaces
Physics
Arboleda, Nelson B., Jr.
Nobuhara, Kunihiro
Kasai, Hideaki
Dino, Wilson Agerico
Nakanishi, Hiroshi
First principles studies for the interaction of hydrogen with a Li(100) surface
description We investigate the interaction of molecular/atomic hydrogen with the Li surface. We calculate the potential energy surfaces (PESs) for H2 and the potential energy curves (PECs) for H at symmetric sites on a Li(100) surface within the density functional theory. The PESs results show the dependence of the energy barriers for H2 dissociative adsorption and the stable adsorption sites for the dissociated H atoms on the H2 center-of-mass (CM) position and the H2 orientation relative to the surface. Also, reaction paths for the direct absorption of H2 can be seen when the H2 CM is directly above the bridge site of the Li(100) surface. Meanwhile, the PECs results indicate that the energy barriers for H absorption and the stable H adsorption sites depend on the H lateral position relative to the surface. A very low energy barrier was observed for H absorption on the bridge site of the surface. Finally, we present a practical explanation of the PESs' and PECs' dependence on the H2 position and orientation relative to the surface from the interaction between the electrons of hydrogen and of the substrate atoms, as well as from the lattice structure of the substrate. ©2005 The Physical Society of Japan.
format text
author Arboleda, Nelson B., Jr.
Nobuhara, Kunihiro
Kasai, Hideaki
Dino, Wilson Agerico
Nakanishi, Hiroshi
author_facet Arboleda, Nelson B., Jr.
Nobuhara, Kunihiro
Kasai, Hideaki
Dino, Wilson Agerico
Nakanishi, Hiroshi
author_sort Arboleda, Nelson B., Jr.
title First principles studies for the interaction of hydrogen with a Li(100) surface
title_short First principles studies for the interaction of hydrogen with a Li(100) surface
title_full First principles studies for the interaction of hydrogen with a Li(100) surface
title_fullStr First principles studies for the interaction of hydrogen with a Li(100) surface
title_full_unstemmed First principles studies for the interaction of hydrogen with a Li(100) surface
title_sort first principles studies for the interaction of hydrogen with a li(100) surface
publisher Animo Repository
publishDate 2005
url https://animorepository.dlsu.edu.ph/faculty_research/1256
https://animorepository.dlsu.edu.ph/context/faculty_research/article/2255/type/native/viewcontent
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