E. Burstein
Ferroelectrics
We have developed a thermodynamic model of the catalytic growth of multiwall carbon nanotubes from hydrocarbon precursors at elevated temperature. Using this model we have computed the heat distribution and carbon concentration in the catalyst. Calculations delivered an analytical formula for the growth time and growth rate. We find that the growth is mainly driven by a concentration gradient within the catalyst, rather than a temperature gradient. ©2005 The American Physical Society.
E. Burstein
Ferroelectrics
Sung Ho Kim, Oun-Ho Park, et al.
Small
M. Hargrove, S.W. Crowder, et al.
IEDM 1998
A. Gupta, R. Gross, et al.
SPIE Advances in Semiconductors and Superconductors 1990