Due to the high electric conductivity and large surface area of nanographites, such as graphene and graphite nanoplatlets, these materials have gained a large interest for use in energy storage devices. However, due to the thin flake geometry, the viscosity of aqueous suspensions containing these materials is high even at low solids contents. This together with the use of high viscosity bio-based binders makes it challenging to coat in a roll-to-roll process with sufficient coating thickness. Electrode materials for commercial energy storage devices are often suspended by organic solvents at high solids contents and coated onto metal foils used as current-collectors. Another interesting approach is to coat the electrode onto the separator, ...
Abstract Scalable aqueous-based supercapacitors are ideal as future energy storage technologies due ...
Paper based supercapacitors are prepared by stacking a paper between two graphene electrodes and soa...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
The current work aims at understanding factors that influence the processability of nanographite-nan...
The current work aims at understanding factors that influence the processability of nanographite-nan...
The current work aims at understanding factors that influence the processability of nanographite–nan...
The current work aims at understanding factors that influence the processability of nanographite–nan...
The growing market of mobile electronic devices, renewable off-grid energy sources and electric vehi...
Paper products with active and functional coatings have attracted interest in recent years to counte...
Electric double-layer capacitors (EDLCs) or supercapacitors (SCs) are fast energy storage devices wi...
Paper based supercapacitors are prepared by stacking a paper between two graphene electrodes and soa...
Abstract Scalable aqueous-based supercapacitors are ideal as future energy storage technologies due ...
Paper based supercapacitors are prepared by stacking a paper between two graphene electrodes and soa...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
Due to the high electric conductivity and large surface area of nanographites, such as graphene and ...
The current work aims at understanding factors that influence the processability of nanographite-nan...
The current work aims at understanding factors that influence the processability of nanographite-nan...
The current work aims at understanding factors that influence the processability of nanographite–nan...
The current work aims at understanding factors that influence the processability of nanographite–nan...
The growing market of mobile electronic devices, renewable off-grid energy sources and electric vehi...
Paper products with active and functional coatings have attracted interest in recent years to counte...
Electric double-layer capacitors (EDLCs) or supercapacitors (SCs) are fast energy storage devices wi...
Paper based supercapacitors are prepared by stacking a paper between two graphene electrodes and soa...
Abstract Scalable aqueous-based supercapacitors are ideal as future energy storage technologies due ...
Paper based supercapacitors are prepared by stacking a paper between two graphene electrodes and soa...
In this paper we propose various current collector alternatives to be used in flexible supercapacito...