Designable control over the morphology and structure of active materials is highly desirable for achieving high-performance devices.Here, we develop a facile microwave-assisted synthesis to decorate MnO2 nanocrystals on three-dimensional (3D) graphite-like capsules (GCs) to obtain sandwich nanostructures (3D MnO2@GCs@MnO2) as electrode materials for electrochemical capacitors(ECs). A templated growth of the 3D GCs was carried out via-catalytic chemical vapor deposition and MnO2 was decorated on the exterior and interior surfaces of the GC walls through microwave irradiation to build an engineered architecture with robust structural and morphological stability. The unique sandwiched architecture has a large interfacial surface area, and allo...
MnO2 nanorod/carbon cloth (MnO2/CC) composites were prepared through in situ redox deposition as fre...
In this study, carbon-supported MnO2 nanocomposites have been prepared using the microwave-assisted ...
The invention of SC fills the performance gap between the conventional capacitors and batteries in t...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Manganese dioxide (MnO2) particles 2-3 nm in size were deposited onto a porous "activated micro...
A simple approach was developed to synthesize the three-dimensional (3D) hybrid of manganese dioxide...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
The pursuit of facile synthetic methods for systematic control over the morphology and crystal phase...
The supercapacitor is a new type of energy storage element. Compared with traditional batteries and ...
Porous network-like MnO2 thick films are successfully synthesized on a flexible stainless steel (SS)...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
MnO2 nanorod/carbon cloth (MnO2/CC) composites were prepared through in situ redox deposition as fre...
In this study, carbon-supported MnO2 nanocomposites have been prepared using the microwave-assisted ...
The invention of SC fills the performance gap between the conventional capacitors and batteries in t...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Manganese dioxide (MnO2) particles 2-3 nm in size were deposited onto a porous "activated micro...
A simple approach was developed to synthesize the three-dimensional (3D) hybrid of manganese dioxide...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
MnO2 is a promising electrode material for supercapacitors, because it exhibits high theoretical spe...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
The pursuit of facile synthetic methods for systematic control over the morphology and crystal phase...
The supercapacitor is a new type of energy storage element. Compared with traditional batteries and ...
Porous network-like MnO2 thick films are successfully synthesized on a flexible stainless steel (SS)...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
MnO2 nanorod/carbon cloth (MnO2/CC) composites were prepared through in situ redox deposition as fre...
In this study, carbon-supported MnO2 nanocomposites have been prepared using the microwave-assisted ...
The invention of SC fills the performance gap between the conventional capacitors and batteries in t...