Epoxy coatings doped with graphene nanoplatelets (GNP) with average thickness close to 200 μm have been manufactured on glass fibre laminate substrate. Their electrical conductivity was close to 0.001–0.01 S/m because the GNP percentages added (8–12 wt% GNP) were higher than the electrical percolation threshold of this GNP/epoxy system. The electrical current increases exponentially with the applied voltage due to the self-heating of the samples. Therefore, these materials don't follow the Ohm's law. Interestingly, the electrical resistance remains constant, or even decreases, at cryogenic temperatures. Self-heating of GNP/epoxy coatings due to Joule's effect was also studied, analysing the effect of the applied voltage. The coating doped w...
A conductive composite of graphene nanoribbon (GNR) stacks and epoxy is fabricated. The epoxy is fil...
Efficient heat dissipation from modern electronic devices is a key issue for their proper performanc...
[EN] Knife-coating can confer new properties on different textile substrates efficiently by integrat...
Epoxy coatings doped with graphene nanoplatelets (GNP) with average thickness close to 200 μm have b...
This paper provides a study of some relevant electro-thermal properties of commercial films made by ...
The present work studies the electrical and electrothermal properties of CNT/GNP-doped nanocomposite...
The influence of the average surface area of different graphene nanoplatelets (GNP) on the thermo-el...
In this study, CNTs and graphite have been incorporated to provide electrical conductivity and self-...
In this study, CNTs and graphite have been incorporated to provide electrical conductivity and self-...
The efficient management of heat is a key issue when considering the performance of electrical devic...
The formation and accumulation of ice can easily cause serious safety issues and damage. The superhy...
Smart textiles have become a promising area of research for heating applications. Coatings with nano...
Self-heating of conductive nanofilled resins due to the Joule effect is interesting for numerous app...
[EN] Thermal sprayed thick glass coatings with a small percentage of multilayer graphene nanoplatele...
This work deals with the design of bulk nanomaterials able to provide ice protection in different ap...
A conductive composite of graphene nanoribbon (GNR) stacks and epoxy is fabricated. The epoxy is fil...
Efficient heat dissipation from modern electronic devices is a key issue for their proper performanc...
[EN] Knife-coating can confer new properties on different textile substrates efficiently by integrat...
Epoxy coatings doped with graphene nanoplatelets (GNP) with average thickness close to 200 μm have b...
This paper provides a study of some relevant electro-thermal properties of commercial films made by ...
The present work studies the electrical and electrothermal properties of CNT/GNP-doped nanocomposite...
The influence of the average surface area of different graphene nanoplatelets (GNP) on the thermo-el...
In this study, CNTs and graphite have been incorporated to provide electrical conductivity and self-...
In this study, CNTs and graphite have been incorporated to provide electrical conductivity and self-...
The efficient management of heat is a key issue when considering the performance of electrical devic...
The formation and accumulation of ice can easily cause serious safety issues and damage. The superhy...
Smart textiles have become a promising area of research for heating applications. Coatings with nano...
Self-heating of conductive nanofilled resins due to the Joule effect is interesting for numerous app...
[EN] Thermal sprayed thick glass coatings with a small percentage of multilayer graphene nanoplatele...
This work deals with the design of bulk nanomaterials able to provide ice protection in different ap...
A conductive composite of graphene nanoribbon (GNR) stacks and epoxy is fabricated. The epoxy is fil...
Efficient heat dissipation from modern electronic devices is a key issue for their proper performanc...
[EN] Knife-coating can confer new properties on different textile substrates efficiently by integrat...