NO2 and CO gas adsorption on carbon nanotubes:: Experiment and theory

被引:213
作者
Santucci, S [1 ]
Picozzi, S
Di Gregorio, F
Lozzi, L
Cantalini, C
Valentini, L
Kenny, JM
Delley, B
机构
[1] Univ Aquila, INFM, I-67010 Coppito, Laquila, Italy
[2] Univ Aquila, Dept Phys, I-67010 Coppito, Laquila, Italy
[3] Univ Aquila, INFM, I-67040 Laquila, Italy
[4] Univ Aquila, Dept Chem & Mat, I-67040 Laquila, Italy
[5] Univ Perugia, Mat Engn Ctr, I-05100 Terni, Italy
[6] Paul Scherrer Inst WHGA123, CH-5232 Villigen, Switzerland
关键词
D O I
10.1063/1.1619948
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
In this work a combined experimental and theoretical study on carbon nanotube (CNT) based system for gas sensing applications is reported. Carbon nanotubes thin films have been deposited by plasma-enhanced chemical vapor deposition on Si3N4/Si substrates provided with Pt electrodes. Microstructural features as determined by scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy highlight the growth of defective tubular carbon structures. The electrical resistivity of the CNT film shows a semiconductinglike temperature dependence and a p-type response with decreasing electrical resistance upon exposure to NO2 gas (100 ppb). No response has been found by exposing the film to CO gas in the temperature range between 25 and 250degreesC. In order to obtain a theoretical validation of the experimental results, the equilibrium position, charge transfer, and density of states are calculated from first principles for the CNT+CO and CNT+NO2 systems. Our spin-unrestricted density functional calculations show that NO2 retains its spin-polarized state upon adsorption. Both CO and NO2 molecules adsorb weakly on the tube wall, with essentially no charge transfer between the tube and molecules. The electronic properties of CNTs are sensitive to the adsorption of NO2, due to an acceptorlike peak close to the tube valence-band maximum, while they are insensitive to the CO adsorption. According to the experimental findings, our theoretical results suggest that gas-induced modification of the density of states close to the Fermi level might significantly affect the transport properties of nanotubes. (C) 2003 American Institute of Physics.
引用
收藏
页码:10904 / 10910
页数:7
相关论文
共 38 条
[1]   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
[2]   Transport phenomena in an anisotropically aligned single-wall carbon nanotube film [J].
Bae, DJ ;
Kim, KS ;
Park, YS ;
Suh, EK ;
An, KH ;
Moon, JM ;
Lim, SC ;
Park, SH ;
Jeong, YH ;
Lee, YH .
PHYSICAL REVIEW B, 2001, 64 (23)
[3]   COBALT-CATALYZED GROWTH OF CARBON NANOTUBES WITH SINGLE-ATOMIC-LAYERWALLS [J].
BETHUNE, DS ;
KIANG, CH ;
DEVRIES, MS ;
GORMAN, G ;
SAVOY, R ;
VAZQUEZ, J ;
BEYERS, R .
NATURE, 1993, 363 (6430) :605-607
[4]   Adsorption of NH3 and NO2 molecules on carbon nanotubes [J].
Chang, H ;
Lee, JD ;
Lee, SM ;
Lee, YH .
APPLIED PHYSICS LETTERS, 2001, 79 (23) :3863-3865
[5]   Growth process conditions of vertically aligned carbon nanotubes using plasma enhanced chemical vapor deposition [J].
Chhowalla, M ;
Teo, KBK ;
Ducati, C ;
Rupesinghe, NL ;
Amaratunga, GAJ ;
Ferrari, AC ;
Roy, D ;
Robertson, J ;
Milne, WI .
JOURNAL OF APPLIED PHYSICS, 2001, 90 (10) :5308-5317
[6]   Extreme oxygen sensitivity of electronic properties of carbon nanotubes [J].
Collins, PG ;
Bradley, K ;
Ishigami, M ;
Zettl, A .
SCIENCE, 2000, 287 (5459) :1801-1804
[7]  
Delley B, 1998, INT J QUANTUM CHEM, V69, P423, DOI 10.1002/(SICI)1097-461X(1998)69:3<423::AID-QUA19>3.0.CO
[8]  
2-2
[9]   From molecules to solids with the DMol3 approach [J].
Delley, B .
JOURNAL OF CHEMICAL PHYSICS, 2000, 113 (18) :7756-7764
[10]   Temperature selective growth of carbon nanotubes by chemical vapor deposition [J].
Ducati, C ;
Alexandrou, I ;
Chhowalla, M ;
Amaratunga, GAJ ;
Robertson, J .
JOURNAL OF APPLIED PHYSICS, 2002, 92 (06) :3299-3303