Three-dimensional (3D) carbon from the assembly of low-dimensionally isolated segments have attracted much attention as these carbon materials not only inherit the superiorities of individual building blocks but also acquire new synergic effects. However, it remains a big issue to assemble isolated carbon segments into a 3D carbon superstructure by a facile strategy. Herein, the spheroidizing growth of hydrothermal carbon as an assembly drive and in situ formed melamine cyanurate nanosheets as structure-directing agent are combined to design and assemble B, N and O co-doped carbon flower as a promising cathode for Zn2+ hybrids supercapacitors. The flower-like carbon exhibits large nanosheets area, interlinked conductive network, nanoscale a...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing...
Constructing a conductive carbon-based artificial interphase layer (AIL) to inhibit dendritic format...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
Abstract Zinc‐ion hybrid supercapacitors (ZHSCs) have garnered increasing attention as promising ene...
Developing high-performance supercapacitors with low-cost electrode materials that possess high powe...
The high performance of electrochemical energy‐storage devices relies largely on scrupulous design o...
Zn-ion hybrid supercapacitors (ZHSCs) have been considered as a promising candidate for energy stora...
Abstract One of the most exciting new developments in energy storage technology is flexible Zn‐ion h...
Zinc-ion hybrid supercapacitors (ZHSs) are highly desirable for large-scale energy storage applicati...
Present work demonstrates a single step process for simultaneous synthesis of metal-nanoparticle-enc...
The high performance of electrochemical energy-storage devices relies largely on scrupulous design o...
Rechargeable aqueous zinc ion hybrid capacitors (ZIHCs), as an up-and-comer aqueous electrochemical ...
Interconnected hollow-structured carbon was successfully prepared from a readily available bio-waste...
Zinc-ion hybrid supercapacitors are a promising energy storage device as they simultaneously combine...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing...
Constructing a conductive carbon-based artificial interphase layer (AIL) to inhibit dendritic format...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
Abstract Zinc‐ion hybrid supercapacitors (ZHSCs) have garnered increasing attention as promising ene...
Developing high-performance supercapacitors with low-cost electrode materials that possess high powe...
The high performance of electrochemical energy‐storage devices relies largely on scrupulous design o...
Zn-ion hybrid supercapacitors (ZHSCs) have been considered as a promising candidate for energy stora...
Abstract One of the most exciting new developments in energy storage technology is flexible Zn‐ion h...
Zinc-ion hybrid supercapacitors (ZHSs) are highly desirable for large-scale energy storage applicati...
Present work demonstrates a single step process for simultaneous synthesis of metal-nanoparticle-enc...
The high performance of electrochemical energy-storage devices relies largely on scrupulous design o...
Rechargeable aqueous zinc ion hybrid capacitors (ZIHCs), as an up-and-comer aqueous electrochemical ...
Interconnected hollow-structured carbon was successfully prepared from a readily available bio-waste...
Zinc-ion hybrid supercapacitors are a promising energy storage device as they simultaneously combine...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
To well understand the effect of the mesopore type of ordered mesoporous carbons (OMCs) on enhancing...
Constructing a conductive carbon-based artificial interphase layer (AIL) to inhibit dendritic format...