Over the last few years, the surface modification of fillers for high-level technological applications such as polymer composites for tyre industry, conductive inks and coatings has seen a considerable increase in interest since it can increase mechanical, electrical, and thermal properties of the final material. Nano-sized carbon allotropes such as graphene and carbon nanotubes are a suitable class of compounds for these purposes: high thermal and electrical conductivity along with considerable mechanical reinforcement are the main improvements that these fillers bring to the composite and their elevated surface area allows to reduce the filler volume ratio compared to more common alternatives. An efficient and reliable method to modify th...
sp2 carbon allotropes are known as efficient reinforcing fillers for rubber materials: not only carb...
Graphene has exceptionally high surface area, mechanical properties, electrical conductivity, therma...
Surface functionalization of nanomaterials opens up unlimited possibilities to combine the distinct ...
Over the last few years, the surface modification of fillers for high-level technological applicatio...
In the last decade, the surface modification of fillers for high-level technological applications su...
Carbon black, carbon nanotubes, graphene and graphene related materials: sp2 carbon allotropes are i...
sp2 carbon allotropes are efficient reinforcing fillers for rubber materials: not only carbon black,...
This work considers elastomer nanocomposites based on natural rubber (NR) and high surface area grap...
The distinct effectiveness of graphene-based nanostructures, including pristine graphene, graphene w...
The adsorption of organic molecules on graphene surfaces is a crucial process in many different rese...
Graphene and single-walled carbon nanotubes (SWNTs) are new low dimensional carbon allotropes discov...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
This paper discusses rubber nanocomposites prepared via melt blending and based on the following nan...
Studies on the problems pertaining to the rubber industry include looking for ways to address the pr...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
sp2 carbon allotropes are known as efficient reinforcing fillers for rubber materials: not only carb...
Graphene has exceptionally high surface area, mechanical properties, electrical conductivity, therma...
Surface functionalization of nanomaterials opens up unlimited possibilities to combine the distinct ...
Over the last few years, the surface modification of fillers for high-level technological applicatio...
In the last decade, the surface modification of fillers for high-level technological applications su...
Carbon black, carbon nanotubes, graphene and graphene related materials: sp2 carbon allotropes are i...
sp2 carbon allotropes are efficient reinforcing fillers for rubber materials: not only carbon black,...
This work considers elastomer nanocomposites based on natural rubber (NR) and high surface area grap...
The distinct effectiveness of graphene-based nanostructures, including pristine graphene, graphene w...
The adsorption of organic molecules on graphene surfaces is a crucial process in many different rese...
Graphene and single-walled carbon nanotubes (SWNTs) are new low dimensional carbon allotropes discov...
Nanocomposites were prepared by blending natural rubber latex with graphene nanoplatelets (GNPs) fun...
This paper discusses rubber nanocomposites prepared via melt blending and based on the following nan...
Studies on the problems pertaining to the rubber industry include looking for ways to address the pr...
The reinforcing ability of the fillers results in significant improvements in properties of polymer ...
sp2 carbon allotropes are known as efficient reinforcing fillers for rubber materials: not only carb...
Graphene has exceptionally high surface area, mechanical properties, electrical conductivity, therma...
Surface functionalization of nanomaterials opens up unlimited possibilities to combine the distinct ...