Bulk aligned multi-walled carbon nanotube films and their epoxy composites were prepared and their DC and AC conductivity studied. Nanotube films of up to 2 mm thickness were grown by catalytic chemical vapor deposition. Composites of nanotubes were made by infiltrating the films with a commercial epoxy. DC electrical resistivities in the axial direction of as-grown and purified films were found to be similar to 1.2 Omega mm and similar to 3.4 Omega rnm, respectively. For the transverse direction the resistivity values were higher only with a factor of similar to 2. In the case of composites, anisotropy is more pronounced showing more than an order of magnitude higher resistivity in the transverse direction (similar to 71.4 Omega mm) as com...
Electrically conductive composite materials can be used for a wide range of applications because the...
In this work, the electrical characteristics of nanocomposites obtained by dispersing multi walled c...
We present a detailed study of the influence of carbon nanotube (CNT) characteristics on the electri...
Bulk aligned multi-walled carbon nanotube films and their epoxy composites were prepared and their D...
Anisotropic electrical conduction measurements have been carried out for thin films of vertically-al...
Optically transparent, conductive, and mechanically flexible epoxy thin films are produced in the pr...
[[abstract]]©2006 Wiley - Multiwalled carbon nanotube (MWCNT)/epoxy composites are prepared, and the...
In this work, the electrical characterization of nanocomposites made of epoxy resins with multiwalle...
A series of multi-walled carbon nanotube (MWCNT)/epoxy composite films with a thickness of ~700 µm i...
In this paper, the electrical characteristics of nano-polymer composites using multiwalled carbon na...
9 pagesInternational audienceWe report the results of effective direct current (dc) resistivities an...
It has been well documented that the electrical properties of a carbon nanotube (CNT) can be either ...
The electrical and thermal conductivities of epoxy composites containing 0.005-0.5 wt% of single-wal...
We present a detailed study of the influence of carbon nanotube (CNT) characteristics on the electri...
In this research we have examined the electric and dielectric properties of nanocomposites intended ...
Electrically conductive composite materials can be used for a wide range of applications because the...
In this work, the electrical characteristics of nanocomposites obtained by dispersing multi walled c...
We present a detailed study of the influence of carbon nanotube (CNT) characteristics on the electri...
Bulk aligned multi-walled carbon nanotube films and their epoxy composites were prepared and their D...
Anisotropic electrical conduction measurements have been carried out for thin films of vertically-al...
Optically transparent, conductive, and mechanically flexible epoxy thin films are produced in the pr...
[[abstract]]©2006 Wiley - Multiwalled carbon nanotube (MWCNT)/epoxy composites are prepared, and the...
In this work, the electrical characterization of nanocomposites made of epoxy resins with multiwalle...
A series of multi-walled carbon nanotube (MWCNT)/epoxy composite films with a thickness of ~700 µm i...
In this paper, the electrical characteristics of nano-polymer composites using multiwalled carbon na...
9 pagesInternational audienceWe report the results of effective direct current (dc) resistivities an...
It has been well documented that the electrical properties of a carbon nanotube (CNT) can be either ...
The electrical and thermal conductivities of epoxy composites containing 0.005-0.5 wt% of single-wal...
We present a detailed study of the influence of carbon nanotube (CNT) characteristics on the electri...
In this research we have examined the electric and dielectric properties of nanocomposites intended ...
Electrically conductive composite materials can be used for a wide range of applications because the...
In this work, the electrical characteristics of nanocomposites obtained by dispersing multi walled c...
We present a detailed study of the influence of carbon nanotube (CNT) characteristics on the electri...