Three-dimensional holey nitrogen-doped carbon matrixes decorated with molybdenum dioxide (MoO2) nanoparticles have been successfully synthesized via a NaCl-assisted template strategy. The obtained MoO2/C composites offered multi-advantages, including higher specific surface area, more active sites, more ions/electrons transmission channels, and shorter transmission path due to the synergistic effect of the uniformly distributed MoO2 nanoparticles and porous carbon structure. Especially, the oxygen vacancies were introduced into the prepared composites and enhanced the Li+ intercalation/deintercalation process during electrochemical cycling by the Coulomb force. The existence of the local built-in electric field was proved by experimental da...
The low-rate capability and fast capacity decaying of the molybdenum dioxide anode material have bee...
Uniform one-dimensional (1D) MoS2-C composite nanostructures including nanorods and nanotubes have b...
MoS2 has attracted a lot of attention for electrochemical energy storage. Herein, we design and fabr...
Three-dimensional holey nitrogen-doped carbon matrixes decorated with molybdenum dioxide (MoO2) nano...
The development of self-standing and binder-free O<sub>2</sub> electrodes is significant for enhanci...
Molybdenum disulfide/nitrogen-doped carbon nanocomposite can afford high capacity, good rate capabil...
Transition-metal oxides based materials have recently been shown to be promising anode material for ...
Molybdenum (Mo)-based compounds with properly engineered nanostructures usually possess improved rev...
Hierarchical MoO2/C microsphere has been successfully prepared via a template-assisted process in ...
The synthesis and electrochemical lithium-ion storage behavior of hierarchical MoO2/MoS2/heteroatom-...
Novel nitrogen-doped porous molybdenum carbide (α-MoC1−x and β-Mo2C) architectures were prepared usi...
Molybdenum disulfide with a layered structure and high theoretical capacity is attracting extensive ...
Supramolecular precursors exhibit unique superiority in preparing functional nanocomposites comprise...
High electronic conductivity, low average working voltage, and high theoretical capacities enable mo...
Constructing 3D hierarchical architecture consisting of 2D hybrid nanosheets is very critical to ach...
The low-rate capability and fast capacity decaying of the molybdenum dioxide anode material have bee...
Uniform one-dimensional (1D) MoS2-C composite nanostructures including nanorods and nanotubes have b...
MoS2 has attracted a lot of attention for electrochemical energy storage. Herein, we design and fabr...
Three-dimensional holey nitrogen-doped carbon matrixes decorated with molybdenum dioxide (MoO2) nano...
The development of self-standing and binder-free O<sub>2</sub> electrodes is significant for enhanci...
Molybdenum disulfide/nitrogen-doped carbon nanocomposite can afford high capacity, good rate capabil...
Transition-metal oxides based materials have recently been shown to be promising anode material for ...
Molybdenum (Mo)-based compounds with properly engineered nanostructures usually possess improved rev...
Hierarchical MoO2/C microsphere has been successfully prepared via a template-assisted process in ...
The synthesis and electrochemical lithium-ion storage behavior of hierarchical MoO2/MoS2/heteroatom-...
Novel nitrogen-doped porous molybdenum carbide (α-MoC1−x and β-Mo2C) architectures were prepared usi...
Molybdenum disulfide with a layered structure and high theoretical capacity is attracting extensive ...
Supramolecular precursors exhibit unique superiority in preparing functional nanocomposites comprise...
High electronic conductivity, low average working voltage, and high theoretical capacities enable mo...
Constructing 3D hierarchical architecture consisting of 2D hybrid nanosheets is very critical to ach...
The low-rate capability and fast capacity decaying of the molybdenum dioxide anode material have bee...
Uniform one-dimensional (1D) MoS2-C composite nanostructures including nanorods and nanotubes have b...
MoS2 has attracted a lot of attention for electrochemical energy storage. Herein, we design and fabr...