Herein we report a series of lithium ion capacitors (LICs) with extraordinary energy-to-power ratios based on olive pit recycled carbons and supported on graphene as a conducting matrix. LICs typically present limited energy densities at high power densities due to the sluggish kinetics of the battery-type electrode. To circumvent this limitation, the hard carbon (HC) was embedded in a reduced graphene oxide (rGO) matrix. The addition of rGO into the negative electrode not only forms a 3D interpenetrating carbon network but also wraps HC particles, facilitating ion diffusion and enhancing the electronic conductivity notably at high power densities. Electrochemical impedance spectroscopy (EIS) analysis reveals that charge-transfer resistance...
igh-energy and power density en-ergy-storage devices are urgently demanded to meet challenges of the...
The critical energy crisis and environmental pollution associated with the fast fossil fuels consump...
An energy storage device reaching energy densities of 102 Wh/Kg at power densities of 104 W/Kg would...
Herein we report a series of lithium ion capacitors (LICs) with extraordinary energy-to-power ratios...
Lithium ion capacitors (LICs) have recently drawn considerable attention because they utilize the ad...
The structure of carbon material comprising the anode is the key to the performance of a lithium ion...
Herein we report an easy approach for the preparation of graphene‐based materials suitable as electr...
Herein we report an easy, ecofriendly and cheap synthetic approach for the preparation of carbon com...
Herein, we report an easy approach for the preparation of graphene-based materials suitable as elect...
With the battery-type anode and capacitor-type cathode, lithium-ion capacitors (LICs) are expected t...
Herein we report an easy, ecofriendly and cheap synthetic approach for the preparation of carbon com...
We report all carbon-based high energy Li-ion capacitor from environmentally threatening bio-source,...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
Most lithium-ion capacitor (LIC) devices include graphite or non-porous hard carbon as negative elec...
igh-energy and power density en-ergy-storage devices are urgently demanded to meet challenges of the...
The critical energy crisis and environmental pollution associated with the fast fossil fuels consump...
An energy storage device reaching energy densities of 102 Wh/Kg at power densities of 104 W/Kg would...
Herein we report a series of lithium ion capacitors (LICs) with extraordinary energy-to-power ratios...
Lithium ion capacitors (LICs) have recently drawn considerable attention because they utilize the ad...
The structure of carbon material comprising the anode is the key to the performance of a lithium ion...
Herein we report an easy approach for the preparation of graphene‐based materials suitable as electr...
Herein we report an easy, ecofriendly and cheap synthetic approach for the preparation of carbon com...
Herein, we report an easy approach for the preparation of graphene-based materials suitable as elect...
With the battery-type anode and capacitor-type cathode, lithium-ion capacitors (LICs) are expected t...
Herein we report an easy, ecofriendly and cheap synthetic approach for the preparation of carbon com...
We report all carbon-based high energy Li-ion capacitor from environmentally threatening bio-source,...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
Most lithium-ion capacitor (LIC) devices include graphite or non-porous hard carbon as negative elec...
igh-energy and power density en-ergy-storage devices are urgently demanded to meet challenges of the...
The critical energy crisis and environmental pollution associated with the fast fossil fuels consump...
An energy storage device reaching energy densities of 102 Wh/Kg at power densities of 104 W/Kg would...