Bio-waste derived nanocelluloses show excellent mechanical flexibility and self-aggregated capability, which enable them to be good supporting substrates for the synthesis of electroactive materials. Herein, we present a facile route for fabricating composite aerogels consisting of carbonized nanocellulose fibers (CNF) and mixed-valent manganese oxide (MnOx), toward supercapacitor applications. Mixed solutions of nanocellulose and manganese acetate with different ratios were prepared and freeze-dried into hybrid aerogels. The hybrid aerogels were then transformed into CNF/MnOx composites by a calcination process. The CNF membranes served as porous carbon nano-reservoirs for MnOx and electrolyte. The CNF/MnOx composites also kept a 3D porous...
Successful application of inexpensive energy storage devices lies in the exploitation of fabrication...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
Manganese dioxide electrochemically deposited onto carbon aerogel/carbon fibres (CAG/CF) shows a gre...
The growing interest in developing wearable energy storage devices requires the identification of su...
Functionalized porous carbon materials with hierarchical structure and developed porosity coming fro...
A novel type of highly flexible and all-solid-state supercapacitor that uses cellulose nanofibril (C...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
There is a rising enthusiasm in developing supercapacitors for the use of energy storage. The curren...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
Manganese oxide (MnO [subscript]2) has long been investigated as a pseudo-capacitive material for fa...
High volumetric energy density, based on the entire electrodes, is necessary for the miniaturization...
A facile and low-cost method has been employed to fabricate MnO<sub>2</sub>/C hybrid materials for u...
Nanocellulose is a sustainable and eco-friendly nanomaterial derived from renewable biomass. In this...
The carbon fiber aerogel with a high surface area, as a promising ideal electrode for electrochemica...
Successful application of inexpensive energy storage devices lies in the exploitation of fabrication...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
Manganese dioxide electrochemically deposited onto carbon aerogel/carbon fibres (CAG/CF) shows a gre...
The growing interest in developing wearable energy storage devices requires the identification of su...
Functionalized porous carbon materials with hierarchical structure and developed porosity coming fro...
A novel type of highly flexible and all-solid-state supercapacitor that uses cellulose nanofibril (C...
Carbon aerogels prepared from low-cost renewable resources are promising electrode materials for fut...
There is a rising enthusiasm in developing supercapacitors for the use of energy storage. The curren...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
Manganese oxide (MnO [subscript]2) has long been investigated as a pseudo-capacitive material for fa...
High volumetric energy density, based on the entire electrodes, is necessary for the miniaturization...
A facile and low-cost method has been employed to fabricate MnO<sub>2</sub>/C hybrid materials for u...
Nanocellulose is a sustainable and eco-friendly nanomaterial derived from renewable biomass. In this...
The carbon fiber aerogel with a high surface area, as a promising ideal electrode for electrochemica...
Successful application of inexpensive energy storage devices lies in the exploitation of fabrication...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...