DocumentCode :
3609000
Title :
Density-Functional Calculation of Methane Adsorption on Graphenes
Author :
Xian-Ping Chen ; Ning Yang ; Jia-Ming Ni ; Miao Cai ; Huai-Yu Ye ; Wong, Cell K. Y. ; Leung, Stanely Y. Y. ; Tian-Ling Ren
Author_Institution :
Inst. of Microelectron., Tsinghua Univ., Beijing, China
Volume :
36
Issue :
12
fYear :
2015
Firstpage :
1366
Lastpage :
1368
Abstract :
The adsorption behaviors of methane adsorbed on different graphenes (pristine, and B-, N-, P-, and Al-doped monolayer and multilayer) are analyzed using density-functional theory. The results demonstrate that the sensing performance of graphene as a methane sensor strongly depends on the selection of dopants and the number of layers. The adsorption energy on monolayer P-doped or Al-doped graphene shows about one order of magnitude higher than that with other dopants. In addition, graphenes doped with different impurities show different responses to the charge transfer. A further analysis indicates that the multilayer structure has a positive effect on the adsorption energy on the pristine, B-doped, and N-doped graphene, while the P-doped or Al-doped graphene shows a significant decrease with the increase in the number of layers. Moreover, the multilayer structure has a minor effect on the charge transfer. Based on the combined effects on the adsorption energy and the charge transfer, Al-doped monolayer graphene is the optimal candidate for methane sensing.
Keywords :
adsorption; aluminium; boron; charge exchange; density functional theory; gas sensors; graphene; monolayers; nitrogen; organic compounds; phosphorus; semiconductor doping; Al-doped monolayer; B-doped monolayer; C:(B,N,P,Al); N-doped monolayer; P-doped monolayer; adsorption energy; charge transfer; density functional theory; graphenes; methane adsorption; methane sensor; multilayer structure; pristine; Adsorption; Charge transfer; Density functional theory; Gas detectors; Graphene; Nonhomogeneous media; Density-functional theory; adsorption; gas sensors; graphene; methane;
fLanguage :
English
Journal_Title :
Electron Device Letters, IEEE
Publisher :
ieee
ISSN :
0741-3106
Type :
jour
DOI :
10.1109/LED.2015.2492580
Filename :
7307144
Link To Document :
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