Template-free synthesis of advanced supercapacitor carbon with tunable interpenetrating micromesoporous structures remains a formidable challenge. Herein, porous carbon fibers with tunable mesopores were fabricated that were derived from discarded aramid fibers by H3PO4-assisted KOH activation without a template. The structural design of porous carbon fibers was achieved by utilizing the dehydration condensation reaction of H3PO4 with the amide groups in the aramid chain segments, which developed primary pores of porous carbon fibers and further facilitated K+ etching and embedding during subsequent KOH activation. The derived porous carbon fibers exhibited extremely tremendous specific surface area, abundant tunable mesopores, and N/O enri...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapa...
Most porous carbons have been prepared using KOH, ZnCl2 as activating agents via chemical activation...
The overwhelming interest in supercapacitors has led to the search for various carbonaceous material...
Mesoporous carbons were prepared from carbon spheres derived from hydrothermal carbonization of sucr...
Mesoporous carbons have been successfully synthesized via self-assembly using larch-based resins as ...
The lack of high-performance electrode materials is the main factor restricting the breakthrough of ...
A new hierarchically porous carbon has been synthesized with self-template of silica phase from a co...
Increasing both the energy density and the power density of supercapacitors is an important but chal...
A biomass-derived 3D porous carbon (3DPC) framework with multi-heteroatom (N, O, and S) doping was e...
An in situ hard template strategy coupled with NaOH activation is proposed to prepare hierarchical p...
Porous carbon has been one desirable electrode material for supercapacitors, but it is still a chall...
Combining high specific surface area (SSA) and superior electrical conductivity together at bulk sta...
A template-free strategy has always been attractive to design and fabricate advanced carbon material...
A template-free and self-doping approach is developed for fabricating N,O-enriched porous carbon sph...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapa...
Most porous carbons have been prepared using KOH, ZnCl2 as activating agents via chemical activation...
The overwhelming interest in supercapacitors has led to the search for various carbonaceous material...
Mesoporous carbons were prepared from carbon spheres derived from hydrothermal carbonization of sucr...
Mesoporous carbons have been successfully synthesized via self-assembly using larch-based resins as ...
The lack of high-performance electrode materials is the main factor restricting the breakthrough of ...
A new hierarchically porous carbon has been synthesized with self-template of silica phase from a co...
Increasing both the energy density and the power density of supercapacitors is an important but chal...
A biomass-derived 3D porous carbon (3DPC) framework with multi-heteroatom (N, O, and S) doping was e...
An in situ hard template strategy coupled with NaOH activation is proposed to prepare hierarchical p...
Porous carbon has been one desirable electrode material for supercapacitors, but it is still a chall...
Combining high specific surface area (SSA) and superior electrical conductivity together at bulk sta...
A template-free strategy has always been attractive to design and fabricate advanced carbon material...
A template-free and self-doping approach is developed for fabricating N,O-enriched porous carbon sph...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapa...
Most porous carbons have been prepared using KOH, ZnCl2 as activating agents via chemical activation...