Carbon nanomaterials have shown great promise for supercapacitors but are usually limited to their unsatisfactory energy densities. To address this issue, it requires rational design and tuning of the carbon composition, texture, and microstructure. Herein, we present a nanohybrid strategy for the preparation of nitrogen/phosphorus codoped porous carbon-coated graphene (KNPG) by conjunction of carbonization and activation of phytic acid on the graphene oxide in the presence of ethylenediamine. The as-synthesized KNPG is endowed with a unique three-dimensional (3D) nanohybrid architecture consisting of graphene layers sandwiched by porous carbon nanosheets, a hierarchically micro-/mesoporous structure, a high specific surface area (up to 596...
Current supercapacitors suffer from low energy density mainly due to the high degree of microporosit...
© 2017 American Chemical Society. The efficient charge accumulation of an ideal supercapacitor elect...
In the current work, the carbon nanoflakes (CNs-Fe/KOH) and porous carbon (PC-Ni/KOH) have been prod...
Sandwich-like nitrogen-doped porous carbon/graphene nanoflakes (NPCFs) are prepared via a two-step a...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
Herein, we report a simple approach for the preparation of phosphate-functionalized carbonaceous gra...
Electric double layer capacitors (or supercapacitors) store charges through the physisorption of ele...
In this study, we adopted a simple method to synthesize a graphene-like-structured nanoporous carbon...
A high-rate graphene-based supercapacitor is very attractive for the practical application of graphe...
A simple method has been developed to prepare nitrogen-doped porous graphene-activated carbon (AC) c...
In this work, we present a new method to synthesize the phosphorus, nitrogen contained graphene nano...
Porous carbon materials are the most commonly used electrode materials for supercapacitors because o...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
In this work, we present a new method to synthesize the phosphorus, nitrogen contained graphene nano...
Current supercapacitors suffer from low energy density mainly due to the high degree of microporosit...
© 2017 American Chemical Society. The efficient charge accumulation of an ideal supercapacitor elect...
In the current work, the carbon nanoflakes (CNs-Fe/KOH) and porous carbon (PC-Ni/KOH) have been prod...
Sandwich-like nitrogen-doped porous carbon/graphene nanoflakes (NPCFs) are prepared via a two-step a...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
Herein, we report a simple approach for the preparation of phosphate-functionalized carbonaceous gra...
Electric double layer capacitors (or supercapacitors) store charges through the physisorption of ele...
In this study, we adopted a simple method to synthesize a graphene-like-structured nanoporous carbon...
A high-rate graphene-based supercapacitor is very attractive for the practical application of graphe...
A simple method has been developed to prepare nitrogen-doped porous graphene-activated carbon (AC) c...
In this work, we present a new method to synthesize the phosphorus, nitrogen contained graphene nano...
Porous carbon materials are the most commonly used electrode materials for supercapacitors because o...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
Herein, a simple route for the fabrication of highly porous-activated few-layer graphene for applica...
In this work, we present a new method to synthesize the phosphorus, nitrogen contained graphene nano...
Current supercapacitors suffer from low energy density mainly due to the high degree of microporosit...
© 2017 American Chemical Society. The efficient charge accumulation of an ideal supercapacitor elect...
In the current work, the carbon nanoflakes (CNs-Fe/KOH) and porous carbon (PC-Ni/KOH) have been prod...