Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly viscous polymer matrix (see Figure) are described. The nanotubes and polymer are made compatible using surfactant molecules, hence avoiding the need for direct attraction between the nanotubes and the matrix. The resulting nanotube-polymer composites have a conductivity percolation threshold of 0.28 wt.-% nanotubes
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
Composites consisting of individual, or bundles of single-walled, exfoliated nanotubes in a highly v...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
We describe a new technique based on latex technology, which allows the production of conductive com...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...
The three main strategies for dispersing carbon nanotubes (NTs) into a polymer matrix to get conduct...