Masaq Index
arXiv 2003-07-02 0 views

Adsorption of Methanol on Aluminum Oxide: A Density Functional Study

Borck, Oyvind · Schroder, Elsebeth

Original · EN

Theoretical calculations based on density functional theory have made significant contributions to our understanding of metal oxides, their surfaces, and the binding of molecules at these surfaces. In this paper we investigate the binding of methanol at the alpha-Al2O3(0001) surface using first-principles density functional theory. We calculate the molecular adsorption energy of methanol to be Eᵍₐds=1.03 eV/molecule. Taking the methanol-methanol interaction into account, we obtain the adsorption energy Eₐds=1.01 eV/molecule. Our calculations indicate that methanol adsorbs chemically by donating electron charge from the methanol oxygen to the surface aluminum. We find that the surface atomic structure changes upon adsorption, most notably the spacing between the outermost Al and O layers changes from 0.11 Angstrom to 0.33 Angstrom.

English translation

This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.

Security check

Type the characters above

Up to 10 translations per person per day.