Hybrid metal–organic frameworks (MOFs) demonstrate great promise as ideal electrode materials for energy‐related applications. Herein, a well‐organized interleaved composite of graphene‐like nanosheets embedded with MnO2 nanoparticles (MnO2@C‐NS) using a manganese‐based MOF and employed as a promising anode material for Li‐ion hybrid capacitor (LIHC) is engineered. This unique hybrid architecture shows intriguing electrochemical properties including high reversible specific capacity 1054 mAh g−1 (close to the theoretical capacity of MnO2, 1232 mAh g−1) at 0.1 A g−1 with remarkable rate capability and cyclic stability (90% over 1000 cycles). Such a remarkable performance may be assigned to the hierarchical porous ultrathin carbon nanosheets ...
It is a challenge to meld the energy of secondary batteries with the power of supercapacitors. Herei...
Synthesis of ultrasmall metal–organic framework (MOF) nanoparticles has been widely recognized as a ...
Graphene-wrapped lithium-excess layered hybrid materials (Li<sub>2</sub>MnO<sub>3</sub>·LiMO<sub>2</...
Hybrid metal–organic frameworks (MOFs) demonstrate great promise as ideal electrode materials for en...
The high porosity and openness of metal-organic frameworks (MOFs) have been extensively studied in g...
Metal organic frameworks (MOFs) are considered as very promising candidates to build electrodes for ...
Interdispersed MnO nanoparticles that are anchored and encapsulated in a three-dimensional (3D) poro...
Hybrid nanostructures based on graphene and metal oxides hold great potential for use in high-perfor...
It is a challenge to meld the energy of secondary batteries with the power of supercapacitors. Herei...
Abstract Metal‐organic frameworks (MOFs) are of quite a significance in the field of inorganic‐organ...
Molybdenum (Mo)-based compounds with properly engineered nanostructures usually possess improved rev...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Li-ion hybrid supercapacitors (LIHSs) have recently attracted increasing attention as a new and prom...
An intriguingly nanostructured composite comprising of MnO/MnS nanoparticles embedded in an N,S-codo...
It is a challenge to meld the energy of secondary batteries with the power of supercapacitors. Herei...
Synthesis of ultrasmall metal–organic framework (MOF) nanoparticles has been widely recognized as a ...
Graphene-wrapped lithium-excess layered hybrid materials (Li<sub>2</sub>MnO<sub>3</sub>·LiMO<sub>2</...
Hybrid metal–organic frameworks (MOFs) demonstrate great promise as ideal electrode materials for en...
The high porosity and openness of metal-organic frameworks (MOFs) have been extensively studied in g...
Metal organic frameworks (MOFs) are considered as very promising candidates to build electrodes for ...
Interdispersed MnO nanoparticles that are anchored and encapsulated in a three-dimensional (3D) poro...
Hybrid nanostructures based on graphene and metal oxides hold great potential for use in high-perfor...
It is a challenge to meld the energy of secondary batteries with the power of supercapacitors. Herei...
Abstract Metal‐organic frameworks (MOFs) are of quite a significance in the field of inorganic‐organ...
Molybdenum (Mo)-based compounds with properly engineered nanostructures usually possess improved rev...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
High-capacity energy storage in electrochemical capacitors may benefit from the combination of elect...
Li-ion hybrid supercapacitors (LIHSs) have recently attracted increasing attention as a new and prom...
An intriguingly nanostructured composite comprising of MnO/MnS nanoparticles embedded in an N,S-codo...
It is a challenge to meld the energy of secondary batteries with the power of supercapacitors. Herei...
Synthesis of ultrasmall metal–organic framework (MOF) nanoparticles has been widely recognized as a ...
Graphene-wrapped lithium-excess layered hybrid materials (Li<sub>2</sub>MnO<sub>3</sub>·LiMO<sub>2</...