Two-dimensional (2D) ultrathin MoS2 nanosheets, owing to their abundant active sites, tunable interlayer space, and favored ion and mass diffusion, show promise as anode materials for energy storage. However, the low electronic conductivity due to the intrinsic semiconductor structure (2H-MoS2), the spontaneous aggregation caused by the large van der Waals force between layers, and the huge volume alteration during the entire reaction hinder the practical applications of MoS2-based anodes. Here, by employing a facial solvothermal approach, we uniformly disperse metallic-phase MoS2 (1T-MoS2) nanosheets on the functionalized carbon nanotube (CNT) surface to form a 1D@2D hierarchical architecture. The obtained CNT@1T-MoS2 composites show stron...
Molybdenum disulfide possesses a layered 2D structure and a high reversible capacity, which is an id...
Development of ultra-stable high capacity electrodes is imperative for the widespread commercializat...
Molybdenum disulfide (MoS2) has been regarded as a promising anode material for sodium ion batteries...
Layered structure MoS2 nanosheets have shown great potential for energy storage applications. Howeve...
Layered structure MoS2 nanosheets have shown great potential for energy storage applications. Howeve...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
Molybdenum disulfide (MoS2) is a promising candidate for high-performance electrodes of lithium ion ...
Molybdenum disulfide (MoS2) is a promising candidate for high-performance electrodes of lithium ion ...
Hybrid materials with delicate composition and morphology usually promote advanced functions. We rep...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Molybdenum disulfide (MoS2), a typical two-dimensional material, is a promising anode material for l...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Molybdenum disulfide possesses a layered 2D structure and a high reversible capacity, which is an id...
Development of ultra-stable high capacity electrodes is imperative for the widespread commercializat...
Molybdenum disulfide (MoS2) has been regarded as a promising anode material for sodium ion batteries...
Layered structure MoS2 nanosheets have shown great potential for energy storage applications. Howeve...
Layered structure MoS2 nanosheets have shown great potential for energy storage applications. Howeve...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
Molybdenum disulfide (MoS2) is a promising candidate for high-performance electrodes of lithium ion ...
Molybdenum disulfide (MoS2) is a promising candidate for high-performance electrodes of lithium ion ...
Hybrid materials with delicate composition and morphology usually promote advanced functions. We rep...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
The exploration of advanced MoS2-based electrode materials overcoming their inherent low conductivit...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Molybdenum disulfide (MoS2), a typical two-dimensional material, is a promising anode material for l...
Developing nano/micro-structures which can effectively upgrade the intriguing properties of electrod...
Molybdenum disulfide possesses a layered 2D structure and a high reversible capacity, which is an id...
Development of ultra-stable high capacity electrodes is imperative for the widespread commercializat...
Molybdenum disulfide (MoS2) has been regarded as a promising anode material for sodium ion batteries...