We have investigated electrical transport properties of long (>10 mu m) multiwalled carbon nanotubes (NTs) by dividing individuals into several segments of identical length. Each segment has different resistance because of the random distribution of defect density in an NT and is corroborated by Raman studies. Higher is the resistance, lower is the current required to break the segments indicating that breakdown occurs at the highly resistive segment/site and not necessarily at the middle. This is consistent with the one-dimensional thermal transport model. We have demonstrated the healing of defects by annealing at moderate temperatures or by current annealing. To strengthen our mechanism, we have carried out electrical breakdown of nitrog...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We characterized the electrical conductance of well-structured multi-walled carbon nanotubes (MWCNTs...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We have investigated electrical transport properties of long (>10 mu m) multiwalled carbon nanotubes...
We have investigated electrical transport properties of long (>10 μm) multiwalled carbon nanotubes (...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
Herein we report on the transport characteristics of rapid pulsed vacuum-arc thermally annealed, ind...
© 2014 IEEE. Controllable electrical breakdown of multiwall nanotubes (MWNTs) is studied utilizing t...
High-current carrying capacity and superior thermal conductivity have made multiwall carbon nanotube...
A single-walled carbon nanotube (SWCNT) is a one-dimensional (1D) conductor that has been proposed a...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We characterized the electrical conductance of well-structured multi-walled carbon nanotubes (MWCNTs...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We have investigated electrical transport properties of long (>10 mu m) multiwalled carbon nanotubes...
We have investigated electrical transport properties of long (>10 μm) multiwalled carbon nanotubes (...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We report the geometrical effect of graded buckled multiwalled carbon nanotube arrays on the electri...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
Herein we report on the transport characteristics of rapid pulsed vacuum-arc thermally annealed, ind...
© 2014 IEEE. Controllable electrical breakdown of multiwall nanotubes (MWNTs) is studied utilizing t...
High-current carrying capacity and superior thermal conductivity have made multiwall carbon nanotube...
A single-walled carbon nanotube (SWCNT) is a one-dimensional (1D) conductor that has been proposed a...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...
We characterized the electrical conductance of well-structured multi-walled carbon nanotubes (MWCNTs...
Doping of carbon nanotubes with nitrogen during growth strongly modifies their electronic structure ...