Title :
Thermal Conductivity of Single-wall Carbon Nanotubes Filled with Argon
Author :
Chen, Hui ; Chen, Yunfei ; Chen, Minhua ; Bi, Kedong
Author_Institution :
Dept. of Mech. Eng., Southeast Univ., Nanjing
Abstract :
Thermal conductivities of single-wall carbon nanotubes (SWNTs) filled with argon (Ar) with types (10, 10) and (15, 15) respectively, are calculated over a temperature range of 500-1200 K using equilibrium molecular dynamics (EMD) simulation method. The Tersoff potential for C-C bonding interactions and the Lennard-Jones (LJ) potential for Ar-C nonbonding interactions are employed. The effects of filled argon on the thermal conductivity of SWNTs as well as the temperature dependence of their thermal conductivities are investigated. It is found that the thermal conductivities of filled (10, 10) and (15, 15) SWNTs, showing qualitatively similar behavior to that of a bare unfilled nanotube, decrease as the temperature increases. Moreover, it is demonstrated that the thermal conductivity of nanotubes filled with argon is much higher than that of an empty nanotube at all temperatures. This increase is perhaps attributed to the heat transfer derived from the Ar-nanotube interaction, and the mass transport due to the active movement of the Ar atom in SWNTs
Keywords :
argon; bonds (chemical); carbon nanotubes; heat transfer; molecular dynamics method; potential energy functions; thermal conductivity; 500 to 1200 K; Ar; C; EMD simulation method; Lennard-Jones potential; SWNT thermal conductivity; Tersoff potential; argon active movement; argon filled SWNT; argon-carbon nonbonding interactions; argon-nanotube interaction; carbon-carbon bonding interactions; equilibrium molecular dynamics; heat transfer; mass transport due; single wall carbon nanotubes; Argon; Atomic measurements; Carbon nanotubes; Computational modeling; Computer simulation; Conducting materials; Heat transfer; Organic materials; Temperature dependence; Thermal conductivity; argon; molecular dynamics; single-wall carbon nanotubes; thermal conductivity;
Conference_Titel :
Nano/Micro Engineered and Molecular Systems, 2006. NEMS '06. 1st IEEE International Conference on
Conference_Location :
Zhuhai
Print_ISBN :
1-4244-0139-9
Electronic_ISBN :
1-4244-0140-2
DOI :
10.1109/NEMS.2006.334697