Comparative study of Li, Na, and K adsorptions on graphite by using ab initio method


Autoria(s): Zhu, Z. H.; Lu, G. Q.
Data(s)

01/01/2004

Resumo

A comprehensive study has been conducted to compare the adsorptions of alkali metals (including Li, Na, and K) on the basal plane of graphite by using molecular orbital theory calculations. All three metal atoms prefer to be adsorbed on the middle hollow site above a hexagonal aromatic ring. A novel phenomenon was observed, that is, Na, instead of Li or K, is the weakest among the three types of metal atoms in adsorption. The reason is that the SOMO (single occupied molecular orbital) of the Na atom is exactly at the middle point between the HOMO and the LUMO of the graphite layer in energy level. As a result, the SOMO of Na cannot form a stable interaction with either the HOMO or the LUMO of the graphite. On the other hand, the SOMO of Li and K can form a relatively stable interaction with either the HOMO or the LUMO of graphite. Why Li has a relatively stronger adsorption than K on graphite has also been interpreted on the basis of their molecular-orbital energy levels.

Identificador

http://espace.library.uq.edu.au/view/UQ:73384

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Doped carbon nanotubes #Catalyzed gasification reactions #Alkali #Potassium #Absorption #Mechanism #Reduction #Co2 #H2o #C1 #291899 Interdisciplinary Engineering not elsewhere classified #620107 Cotton #0904 Chemical Engineering
Tipo

Journal Article