Multilayered flexible fibers, consisting of carbon black–carbon nanotube fibers, manganese oxides, and conducting polymers, are fabricated for use as electrodes in supercapacitors. Carbon-based fibers are initially prepared by wet-spinning using carbon-based nanomaterials (carbon black and carbon nanotubes) and chitosan as a matrix. Subsequent coatings with manganese oxides and conducting polymers form a multilayered structure. Different MnO2 crystalline structures (e-MnO2, ¿-MnO2) are grown onto the fiber by electrodeposition and different conducting polymers (polyethylenedioxythiophene and polypyrrole) used as a conductive wrapping. Each layer improves the performance of the fiber by adding different functionalities. While MnO2 improves t...
Flexible fibre supercapacitors were fabricated by wet-spinning from carbon nanotube/carbon black dis...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
Fibers made from CNTs (CNT fibers) have the potential to form high-strength, lightweight materials w...
Multilayered flexible fibers, consisting of carbon black–carbon nanotube fibers, manganese oxides, ...
Multilayered flexible fibers, consisting of carbon black–carbon nanotube fibers, manganese oxides, ...
Multilayered flexible fibers, consisting of carbon black-carbon nanotube fibers, manganese oxides an...
Multilayered flexible fibers, consisting of carbon black-carbon nanotube fibers, manganese oxides an...
Fibres made from different nanostructured carbons (carbon black (CB)), carbon nanotubes (CNT) and CB...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
In recent years, flexible electronic devices pursued for potential applications. The design and the ...
© 2017 Elsevier Ltd A multi hierarchical construction is designed for flexible supercapacitor electr...
Electrochemical deposition of MnO2 onto carbon nanotube (CNT) yarn gives a high?performance, flexibl...
Wearable energy storage devices are of practical interest, but few have been commercially exploited....
© 2018 American Chemical Society. Polymorphous supercapacitors were constructed from flexible three-...
Flexible fibre supercapacitors were fabricated by wet-spinning from carbon nanotube/carbon black dis...
Flexible fibre supercapacitors were fabricated by wet-spinning from carbon nanotube/carbon black dis...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
Fibers made from CNTs (CNT fibers) have the potential to form high-strength, lightweight materials w...
Multilayered flexible fibers, consisting of carbon black–carbon nanotube fibers, manganese oxides, ...
Multilayered flexible fibers, consisting of carbon black–carbon nanotube fibers, manganese oxides, ...
Multilayered flexible fibers, consisting of carbon black-carbon nanotube fibers, manganese oxides an...
Multilayered flexible fibers, consisting of carbon black-carbon nanotube fibers, manganese oxides an...
Fibres made from different nanostructured carbons (carbon black (CB)), carbon nanotubes (CNT) and CB...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
In recent years, flexible electronic devices pursued for potential applications. The design and the ...
© 2017 Elsevier Ltd A multi hierarchical construction is designed for flexible supercapacitor electr...
Electrochemical deposition of MnO2 onto carbon nanotube (CNT) yarn gives a high?performance, flexibl...
Wearable energy storage devices are of practical interest, but few have been commercially exploited....
© 2018 American Chemical Society. Polymorphous supercapacitors were constructed from flexible three-...
Flexible fibre supercapacitors were fabricated by wet-spinning from carbon nanotube/carbon black dis...
Flexible fibre supercapacitors were fabricated by wet-spinning from carbon nanotube/carbon black dis...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
Fibers made from CNTs (CNT fibers) have the potential to form high-strength, lightweight materials w...