the kinetic rate and the saturation capacity of the nanotubes for Xe adsorption at 95 K.
Infrared studies show the existence of carboxylic acid and quinone groups on the nanotube
surface prior to heating above 623 K. These groups decompose during heat treatment of
nanotube sample from 623 to 1073 K producing CO, CO2, CH4 and H2. The removal of a
large number of these groups opens the entry ports for adsorption on the inner surface of the …