The porous carbon nanotubes were selectively prepared from the pristine carbon nanotubes. The surface of carbon nanotubes was firstly functionalized with Fe2O3 nanoparticles and subsequent heat treatment induced CNT etching. After removal of Fe2O3 nanoparticles, mesopores were formed in carbon nanotubes and thus porous structure was obtained. The obtained material of porous carbon nanotubes with higher specific surface area and larger pore sizes was tested as anode material of lithium ion batteries and showed improved performance with respect to the pristine carbon nanotubes
Mesoporous three-dimensional (3D) TiO2/carbon nanotube conductive hybrid nanostructures can be succe...
The electrochemical lithium insertion properties of tin-filled multi-walled carbon nanotubes are des...
Nanostructured carbon nanotubes/iron oxide hybrids (CNIOHs) were synthesized by a scalable Bake- Bre...
Porous carbon materials are used for many electrochemical applications due to their outstanding prop...
AbstractVertically aligned mesoporous carbon nanotubes (MCTs) filled with Co3O4 nanoparticles (NPs) ...
Technological advances in membrane technology, catalysis, and electrochemical energy storage require...
Technological advances in membrane technology, catalysis, and electrochemical energy storage require...
Generally, the fast ion/electron transport and structural stability dominate the superiority in lith...
The morphologies and pore architectures of carbon nanostructures could be precisely controlled via a...
Carbon nanotubes (CNTs) configured as sponge-like paper can be used as lightweight three-dimensional...
Lithium metal is an ideal anode material due to its high specific capacity and low redox potential. ...
As an integral part of a lithium-ion battery, carbonaceous conductive agents have an important impac...
In this work, we report a facile method for the synthesis of a Co3O4-functionalized carbon nanotube ...
A series of Fe3O4/CNT nanocomposites are effectively synthesized by an in situ chemical co-precipita...
Energy storage is unable to keep up with the shrinking size of consumer electronic. A simple method ...
Mesoporous three-dimensional (3D) TiO2/carbon nanotube conductive hybrid nanostructures can be succe...
The electrochemical lithium insertion properties of tin-filled multi-walled carbon nanotubes are des...
Nanostructured carbon nanotubes/iron oxide hybrids (CNIOHs) were synthesized by a scalable Bake- Bre...
Porous carbon materials are used for many electrochemical applications due to their outstanding prop...
AbstractVertically aligned mesoporous carbon nanotubes (MCTs) filled with Co3O4 nanoparticles (NPs) ...
Technological advances in membrane technology, catalysis, and electrochemical energy storage require...
Technological advances in membrane technology, catalysis, and electrochemical energy storage require...
Generally, the fast ion/electron transport and structural stability dominate the superiority in lith...
The morphologies and pore architectures of carbon nanostructures could be precisely controlled via a...
Carbon nanotubes (CNTs) configured as sponge-like paper can be used as lightweight three-dimensional...
Lithium metal is an ideal anode material due to its high specific capacity and low redox potential. ...
As an integral part of a lithium-ion battery, carbonaceous conductive agents have an important impac...
In this work, we report a facile method for the synthesis of a Co3O4-functionalized carbon nanotube ...
A series of Fe3O4/CNT nanocomposites are effectively synthesized by an in situ chemical co-precipita...
Energy storage is unable to keep up with the shrinking size of consumer electronic. A simple method ...
Mesoporous three-dimensional (3D) TiO2/carbon nanotube conductive hybrid nanostructures can be succe...
The electrochemical lithium insertion properties of tin-filled multi-walled carbon nanotubes are des...
Nanostructured carbon nanotubes/iron oxide hybrids (CNIOHs) were synthesized by a scalable Bake- Bre...