Today many applications require new effective approaches for energy delivery on demand. Supercapacitors are viewed as essential energy storage devices that can continuously provide quick energy. The performance of supercapacitors is mostly determined by electrode materials that can store energy via electrostatic charge accumulation. This study presents new sustainable cellulose-derived composite electrodes which consist of carbon nanofibrous (CNF) mats covered with vapor-grown carbon nanotubes (CNTs). The CNF/CNT electrodes have high electrical conductivity and surface area: the two most important features that are responsible for good electrochemical performance of supercapacitor electrodes. The results show that the composite electrodes h...
Cellulose-based carbon nanofibers (CNFs) with high mechanical strength and electrochemical stability...
Sustainable biomass has attracted a great attention in developing green renewable energy storage dev...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
The problem of energy storage and its continuous delivery on demand needs new effective solutions. S...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
Nitrogen-functionalized carbon nanofibers (N-CNFs) were prepared by carbonizing polypyrrole (PPy)-co...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
Herein, we demonstrate a unique supercapacitor composite electrode material that is originated from ...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Supercapacitors are promising energy storage devices providing capacitance much higher than conventi...
Nitrogen-functionalized carbon nanofibers (N-CNFs) were prepared by carbonizing polypyrrole (PPy)-co...
Cellulose-based carbon nanofibers (CNFs) with high mechanical strength and electrochemical stability...
Sustainable biomass has attracted a great attention in developing green renewable energy storage dev...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
The problem of energy storage and its continuous delivery on demand needs new effective solutions. S...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
Supercapacitors are efficient energy storage devices with long lifetime and safe service. Their effe...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
Nitrogen-functionalized carbon nanofibers (N-CNFs) were prepared by carbonizing polypyrrole (PPy)-co...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
Herein, we demonstrate a unique supercapacitor composite electrode material that is originated from ...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Supercapacitors are promising energy storage devices providing capacitance much higher than conventi...
Nitrogen-functionalized carbon nanofibers (N-CNFs) were prepared by carbonizing polypyrrole (PPy)-co...
Cellulose-based carbon nanofibers (CNFs) with high mechanical strength and electrochemical stability...
Sustainable biomass has attracted a great attention in developing green renewable energy storage dev...
Cellulose fibers with porous structure and electrolyte absorption properties are considered to be a ...