We report on a non-invasive contact probing (NICP) system for measuring the distribution of local surface conductivity of macroscopic thin-films of carbon nanotubes. Using the NICP system, we were able to obtain the local sheet resistance of the conducting thin-films continuously at similar to 10 mu m resolution over few centimeters which would not have been possible using conventional contact probing methods. Measurements performed on carbon nanotube thin-films with various nanotube densities, physical, and chemical treatments revealed that the local variation in electrical characteristics was not reflected in global conductance measurements. This demonstrated the usefulness of the NICP system for evaluating the effect of processing on the...
A new methodology is developed to enable the measurement of the resistance across individual carbon ...
Spatial conductivity mapping of carbon nanotube composite thin films by electrical impedance tomogra...
Despite the technological significance of carbon nanotube (CNT) arrays and metal-oxide coated CNTs f...
We report on a non-invasive contact probing (NICP) system for measuring the distribution of local su...
Carbon nanotubes (CNT) are known to be materials with potential for manufacturing sub-20 nm high asp...
This paper describes the application of electrical impedance tomography (EIT) to demonstrate the mul...
Electrical characterization of nanostructures, such as nanotubes and wires, is a demanding task that...
Electrical characterization of nanostructures, such as nanotubes and wires, is a demanding task that...
We describe a method for producing and characterizing electrically connected single-wall carbon nano...
We present results of carbon nanotube conductance measurements. The experiments were performed usin...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
THESIS 9389In order to build electronic devices and circuits comprised of nanoscale materials as the...
Multi-walled carbon nanotubes (CNTs), either on an SiO2 substrate or suspended above the substrate, ...
Abstract Using an atomic force microscope (AFM) at a controlled contact force, we report the electri...
Contact potential, conduction current, and electrical contact resistance were measured in air and in...
A new methodology is developed to enable the measurement of the resistance across individual carbon ...
Spatial conductivity mapping of carbon nanotube composite thin films by electrical impedance tomogra...
Despite the technological significance of carbon nanotube (CNT) arrays and metal-oxide coated CNTs f...
We report on a non-invasive contact probing (NICP) system for measuring the distribution of local su...
Carbon nanotubes (CNT) are known to be materials with potential for manufacturing sub-20 nm high asp...
This paper describes the application of electrical impedance tomography (EIT) to demonstrate the mul...
Electrical characterization of nanostructures, such as nanotubes and wires, is a demanding task that...
Electrical characterization of nanostructures, such as nanotubes and wires, is a demanding task that...
We describe a method for producing and characterizing electrically connected single-wall carbon nano...
We present results of carbon nanotube conductance measurements. The experiments were performed usin...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
THESIS 9389In order to build electronic devices and circuits comprised of nanoscale materials as the...
Multi-walled carbon nanotubes (CNTs), either on an SiO2 substrate or suspended above the substrate, ...
Abstract Using an atomic force microscope (AFM) at a controlled contact force, we report the electri...
Contact potential, conduction current, and electrical contact resistance were measured in air and in...
A new methodology is developed to enable the measurement of the resistance across individual carbon ...
Spatial conductivity mapping of carbon nanotube composite thin films by electrical impedance tomogra...
Despite the technological significance of carbon nanotube (CNT) arrays and metal-oxide coated CNTs f...