Combining polymers with small amounts of stiff carbon-based nanofillers such as graphene or graphene oxide is expected to yield low-density nanocomposites with exceptional mechanical properties. However, such nanocomposites have remained elusive because of incompatibilities between fillers and polymers that are further compounded by processing difficulties. Here we report a water-based process to obtain highly reinforced nanocomposite films by simple mixing of two liquid crystalline solutions: a colloidal nematic phase comprised of graphene oxide platelets and a nematic phase formed by a rod-like high-performance aramid. Upon drying the resulting hybrid biaxial nematic phase, we obtain robust, structural nanocomposites reinforced with graph...
Graphene oxide (GO) liquid crystals are of great interest for membrane preparation. Vacuum filtratio...
The self-assembly behaviour of graphene oxide (GO) nanosheets in the presence of a water-soluble pol...
Graphene oxide (GO) can form liquid crystals in aqueous solution, which can be employed in many appl...
Combining polymers with small amounts of stiff carbon-based nanofillers such as graphene or graphene...
We report on the morphology and mechanical properties of nanocomposite films derived from aqueous, h...
In this paper, we report the formation and transformation of graphene oxide (GO) liquid crystalline ...
The assembly of graphene oxide (GO) nanosheets into bioinspired nacre-like nanocomposites is a poten...
The assembly of graphene oxide (GO) nanosheets into bioinspired nacre-like nanocomposites is a poten...
Liquid crystal ordering is an opportunity to develop novel materials and applications with spontaneo...
Graphene oxide (GO) dispersed in water has been combined with a mixture of aqueous polymer dispersio...
Graphene oxide is promising as a plate-like giant molecular building block for the assembly of new c...
Graphene has attracted tremendous interest in reinforcing fillers due to its unique structure and ex...
This thesis explores the properties, morphologies and formation mechanisms of graphene-based assembl...
Graphene oxides (GOs), an oxygenated derivative of graphene, spontaneously undergo monolayer exfolia...
Artificial nacre-like composite films of graphene oxide (GO) with a variety of commercially availabl...
Graphene oxide (GO) liquid crystals are of great interest for membrane preparation. Vacuum filtratio...
The self-assembly behaviour of graphene oxide (GO) nanosheets in the presence of a water-soluble pol...
Graphene oxide (GO) can form liquid crystals in aqueous solution, which can be employed in many appl...
Combining polymers with small amounts of stiff carbon-based nanofillers such as graphene or graphene...
We report on the morphology and mechanical properties of nanocomposite films derived from aqueous, h...
In this paper, we report the formation and transformation of graphene oxide (GO) liquid crystalline ...
The assembly of graphene oxide (GO) nanosheets into bioinspired nacre-like nanocomposites is a poten...
The assembly of graphene oxide (GO) nanosheets into bioinspired nacre-like nanocomposites is a poten...
Liquid crystal ordering is an opportunity to develop novel materials and applications with spontaneo...
Graphene oxide (GO) dispersed in water has been combined with a mixture of aqueous polymer dispersio...
Graphene oxide is promising as a plate-like giant molecular building block for the assembly of new c...
Graphene has attracted tremendous interest in reinforcing fillers due to its unique structure and ex...
This thesis explores the properties, morphologies and formation mechanisms of graphene-based assembl...
Graphene oxides (GOs), an oxygenated derivative of graphene, spontaneously undergo monolayer exfolia...
Artificial nacre-like composite films of graphene oxide (GO) with a variety of commercially availabl...
Graphene oxide (GO) liquid crystals are of great interest for membrane preparation. Vacuum filtratio...
The self-assembly behaviour of graphene oxide (GO) nanosheets in the presence of a water-soluble pol...
Graphene oxide (GO) can form liquid crystals in aqueous solution, which can be employed in many appl...