Tuneable resonance properties of graphene by nitrogen-dopant


Autoria(s): Zhan, Haifei; Wei, Ye; Gu, YuanTong
Data(s)

01/05/2014

Resumo

Doping as one of the popular methods to manipulate the properties of nanomaterials has received extensive application in deriving different types of graphene derivates, while the understanding of the resonance properties of dopant graphene is still lacking in literature. Based on the large-scale molecular dynamics simulation, reactive empirical bond order potential, as well as the tersoff potential, the resonance properties of N-doped graphene were studied. The studied samples were established according to previous experiments with the N atom’s percentage ranging from 0.43%-2.98%, including three types of N dopant locations, i.e., graphitic N, pyrrolic N and pyridinic N. It is found that different percentages of N-dopant exert different influence to the resonance properties of the graphene, while the amount of N-dopant is not the only factor that determines its impact. For all the considered cases, a relative large percentage of N-dopant (2.98% graphitic N-dopant) is observed to introduce significant influence to the profile of the external energy, and thus lead to an extremely low Q-factor comparing with that of the pristine graphene. The most striking finding is that, the natural frequency of the defective graphene with N-dopant appears uniformly larger than that of the pristine defective graphene. While for the perfect graphene, the N-dopant shows less influence to its natural frequency. This study will enrich the current understanding of the influence of dopants on graphene, which will eventually shed lights on the design of different molecules-doped graphene sheet.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/72738/

Publicador

Trans Tech Publications Ltd.

Relação

http://eprints.qut.edu.au/72738/1/AFN-045%28m2%29.pdf

http://www.scientific.net/AMM.553.3

DOI:10.4028/www.scientific.net/AMM.553.3

Zhan, Haifei, Wei, Ye, & Gu, YuanTong (2014) Tuneable resonance properties of graphene by nitrogen-dopant. Applied Mechanics and Materials, 553, pp. 3-9.

http://purl.org/au-research/grants/ARC/130102120

Direitos

Copyright 2014 Trans Tech Publications, Switzerland

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Palavras-Chave #091306 Microelectromechanical Systems (MEMS) #091307 Numerical Modelling and Mechanical Characterisation #100708 Nanomaterials #graphene #nitrogen-dopant #resonance #molecular dynamics simulation #natural frequnecy #quality factor
Tipo

Journal Article