Why H Atom Prefers the On-Top Site and Alkali Metals Favor the Middle Hollow Site on the Basal Plane of Graphite


Autoria(s): Zhu, Zong Hua; Lu, Quing; Wang, Fu Yang
Contribuinte(s)

George C Schatz

Data(s)

01/01/2005

Resumo

In this work, the different adsorption properties of H and alkali metal atoms on the basal plane of graphite are studied and compared using a density functional method on the same model chemistry level. The results show that H prefers the on-top site while alkali metals favor the middle hollow site of graphite basal plane due to the unique electronic structures of H, alkali metals, and graphite. H has a higher electronegativity than carbon, preferring to form a covalent bond with C atoms, whereas alkaline metals have lower electronegativity, tending to adsorb on the highest electrostatic potential sites. During adsorption, there are more charges transferred from alkali metal to graphite than from H to graphite.

Identificador

http://espace.library.uq.edu.au/view/UQ:76514

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Chemistry, Physical #Molecular-orbital Theory #Doped Carbon Nanotubes #Hydrogen Storage #Cluster-model #Adsorption #Chemisorption #Potassium #Surface #Li #C1 #250199 Physical Chemistry not elsewhere classified #290699 Chemical Engineering not elsewhere classified #670706 Organic industrial chemicals not elsewhere classified #670707 Inorganic industrial chemicals #0904 Chemical Engineering
Tipo

Journal Article