Multiwalled carbon nanotube (MWNT)/cellulose composite nanofibers have been prepared by electrospinning a MWNT/cellulose acetate blend solution followed by deacetylation. These composite nanofibers were then used as precursors for carbon nanofibers (CNFs). The effect of nanotubes on the stabilization of the precursor and microstructure of the resultant CNFs were investigated using thermogravimetric analysis, transmission electron microscopy and Raman spectroscopy. It is demonstrated that the incorporated MWNTs reduce the activation energy of the oxidative stabilization of cellulose nanofibers from ∼230 to ∼180 kJ mol<sup>–1</sup>. They also increase the crystallite size, structural order, and electrical conductivity of the activated CNFs (A...
Due to their lightweight, large surface area; excellent electrical conductivity; and mechanical stre...
Fiber nanomaterials can become fundamental devices that can be woven into smart textiles, for exampl...
Electroconductive fibers composed of cellulose and carbon nanotubes (CNTs) were spun using aqueous a...
Cellulose-based carbon nanofibers (CNFs) with high mechanical strength and electrochemical stability...
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...
The problem of energy storage and its continuous delivery on demand needs new effective solutions. S...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
There is a growing interest in carbon nanofibre materials especially for applications that require h...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Due to their lightweight, large surface area; excellent electrical conductivity; and mechanical stre...
Due to their lightweight, large surface area; excellent electrical conductivity; and mechanical stre...
Fiber nanomaterials can become fundamental devices that can be woven into smart textiles, for exampl...
Electroconductive fibers composed of cellulose and carbon nanotubes (CNTs) were spun using aqueous a...
Cellulose-based carbon nanofibers (CNFs) with high mechanical strength and electrochemical stability...
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...
The problem of energy storage and its continuous delivery on demand needs new effective solutions. S...
The biopolymer cellulose is an inexhaustible source for the synthesis of various functional material...
There is a growing interest in carbon nanofibre materials especially for applications that require h...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
Today many applications require new effective approaches for energy delivery on demand. Supercapacit...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Due to their lightweight, large surface area; excellent electrical conductivity; and mechanical stre...
Due to their lightweight, large surface area; excellent electrical conductivity; and mechanical stre...
Fiber nanomaterials can become fundamental devices that can be woven into smart textiles, for exampl...
Electroconductive fibers composed of cellulose and carbon nanotubes (CNTs) were spun using aqueous a...