Hydrogen storage capacity of Ti-doped boron-nitride and B Be-substituted carbon nanotubes

Date

2007

Editor(s)

Advisor

Supervisor

Co-Advisor

Co-Supervisor

Instructor

Source Title

Physical Review B - Condensed Matter and Materials Physics

Print ISSN

1098-0121

Electronic ISSN

Publisher

American Physical Society

Volume

76

Issue

7

Pages

073413-1 - 073413-4

Language

English

Journal Title

Journal ISSN

Volume Title

Series

Abstract

We investigate the hydrogen absorption capacity of two tubular structures, namely, B Be -substituted single-wall carbon nanotube (SWNT) and Ti covered single-wall boron nitride nanotube (SWBNT) using first-principles plane wave method. The interaction of H2 molecules with the outer surface of bare SWBNT, which is normally very weak, can be significantly enhanced upon functionalization by Ti atoms. Each Ti atom adsorbed on SWBNT can bind up to four H2 molecules with an average binding energy suitable for room temperature storage. While the substitution process of Be atom on SWNT is endothermic, the substituted Be strengthens the interaction between tube surface and H2 to hold one H2 molecule. © 2007 The American Physical Society.

Course

Other identifiers

Book Title

Keywords

Degree Discipline

Degree Level

Degree Name

Citation

Published Version (Please cite this version)