Chemisorption of molecular hydrogen on carbon nanotubes: A route to effective hydrogen storage?

被引:44
作者
Bilic, Ante [1 ]
Gale, Julian D. [2 ]
机构
[1] Inst High Performance Comp, Mat Theory & Simulat Lab, Singapore 117528, Singapore
[2] Curtin Univ Technol, Nanochem Res Inst, Dept Appl Chem, Perth, WA 6845, Australia
关键词
D O I
10.1021/jp802104n
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The energetics of the chemisorption of molecular hydrogen on small-diameter armchair carbon nanotubes has been investigated using first-principles density functional theory (DFT). The adsorption of hydrogen was examined at a range of coverages, from low to full monolayer coverage. Several pathways for hydrogenation were investigated, and those that could lead to energetically favorable, stable structures of fully saturated nanotubes were identified. For these routes, the calculations indicate that the addition of hydrogen, apart from at the very onset, is exothermic and also becomes increasingly more favorable with increasing degree of coverage. Carbon nanotubes of sufficiently small diameter are shown to have the capacity to store a full monolayer of hydrogen effectively via chemisorption. In addition, kinetic barriers for the dissociative chemisorption of H-2 and thermal equilibration of the system were considered. These were found to be quite large for admolecules on an otherwise-clean nanotube, but to drop substantially in the vicinity of preadsorbed hydrogen; that is, the adsorbed hydrogen acts as an autocatalyst for further hydrogenation. On the basis of these findings, the chemical reaction of hydrogen with carbon nanotubes is expected to become increasingly exothermic and also to proceed more rapidly at higher coverages.
引用
收藏
页码:12568 / 12575
页数:8
相关论文
共 45 条
[1]   Density functional study of adsorption of molecular hydrogen on graphene layers [J].
Arellano, JS ;
Molina, LM ;
Rubio, A ;
Alonso, JA .
JOURNAL OF CHEMICAL PHYSICS, 2000, 112 (18) :8114-8119
[2]   Interaction of molecular and atomic hydrogen with (5,5) and (6,6) single-wall carbon nanotubes [J].
Arellano, JS ;
Molina, LM ;
Rubio, A ;
López, MJ ;
Alonso, JA .
JOURNAL OF CHEMICAL PHYSICS, 2002, 117 (05) :2281-2288
[3]   Creation of paired electron states in the gap of semiconducting carbon nanotubes by correlated hydrogen adsorption [J].
Buchs, Gilles ;
Krasheninnikov, Arkady V. ;
Ruffieux, Pascal ;
Groening, Pierangelo ;
Foster, Adam S. ;
Nieminen, Risto M. ;
Groening, Oliver .
NEW JOURNAL OF PHYSICS, 2007, 9
[4]   Chemisorption of hydrogen molecules on carbon nanotubes under high pressure [J].
Chan, SP ;
Chen, G ;
Gong, XG ;
Liu, ZF .
PHYSICAL REVIEW LETTERS, 2001, 87 (20) :205502-1
[5]   Mechanism of hydrogen sorption in single-walled carbon nanotubes [J].
Cheng, H ;
Pez, GP ;
Cooper, AC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (24) :5845-5846
[6]   Storage of hydrogen in single-walled carbon nanotubes [J].
Dillon, AC ;
Jones, KM ;
Bekkedahl, TA ;
Kiang, CH ;
Bethune, DS ;
Heben, MJ .
NATURE, 1997, 386 (6623) :377-379
[7]   Chemisorption of hydrogen atoms on the sidewalls of armchair single-walled carbon nanotubes [J].
Dinadayalane, T. C. ;
Kaczmarek, Anna ;
Lukaszewicz, Jerzy ;
Leszczynski, Jerzy .
JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (20) :7376-7383
[8]  
Dresselhaus MS, 1996, Science of fullerenes and carbon nanotubes: Their properties and applications
[9]   Effects of hydrogen adsorption on single-wall carbon nanotubes:: Metallic hydrogen decoration -: art. no. 121401 [J].
Gülseren, O ;
Yildirim, T ;
Ciraci, S .
PHYSICAL REVIEW B, 2002, 66 (12) :1214011-1214014
[10]   Implementation of a Z-matrix approach within the SIESTA periodic boundary conditions code and its application to surface adsorption [J].
Hoft, R. C. ;
Gale, J. D. ;
Ford, M. J. .
MOLECULAR SIMULATION, 2006, 32 (08) :595-600