Abstract Due to continuous rise of demand for powerful energy sources for portable applications, high energy density and efficiency rechargeable batteries are under constant development. Currently, the most widely used power source for such applications is rechargeable lithium-ion batteries (LIBs). To increase the energy density, rate capability and cyclability of LIBs, alternative anode materials, such as MoS2, are under intensive investigation. The layered structure of MoS2 resembles graphite, and its theoretical specific capacity is about twice higher than that of graphite (670 mAh g-1 against 372 mAh g-1) due to its higher interlayer spacing (∼0.6 nm) for a Li-ion intercalation. In this work MoS2 nanopowder (MoS2-NP), prepared by self-p...
Layered MoS2 has attracted much attention as a promising anode material for lithium ion batteries. T...
MoS2 nanoplates, consisting of disordered graphene-like layers, with a thickness of similar to 30 nm...
The demand for well-designed nanostructured composites with enhanced electrochemical performance for...
This is the first targeted review of the synthesis-microstructure- electrochemical performance relat...
In recent years, lithium ion batteries (LIBs) have attracted more and more attention due to the high...
MoS2 is a promising anode material due to its graphite-like structure and high theoretical capacity ...
MoS2 is a promising anode material due to its graphite-like structure and high theoretical capacity ...
Molybdenum disulfide (MoS2), which generally possesses a graphene-like two-dimensional layered struc...
A novel molybdenum disulfide/carbon (MoS2/C) nanocomposite is synthesized by a simple hydrothermal m...
Molybdenum disulfide is popular for rechargeable batteries, especially in Li-ion batteries, because ...
The preparation of few-layered ultrasmall MoS2 nanosheets inlayed into carbon frameworks is challeng...
Molybdenum disulfide is popular for rechargeable batteries, especially in Li-ion batteries, because ...
Abstract A facile, cost-effective, non-toxic, and surfactant-free route has been developed to synthe...
Electrochemically stable molybdenum disulfide (MoS2) with a two-dimensional nanowall structure is su...
Layered MoS2 has attracted much attention as a promising anode material for lithium ion batteries. T...
Layered MoS2 has attracted much attention as a promising anode material for lithium ion batteries. T...
MoS2 nanoplates, consisting of disordered graphene-like layers, with a thickness of similar to 30 nm...
The demand for well-designed nanostructured composites with enhanced electrochemical performance for...
This is the first targeted review of the synthesis-microstructure- electrochemical performance relat...
In recent years, lithium ion batteries (LIBs) have attracted more and more attention due to the high...
MoS2 is a promising anode material due to its graphite-like structure and high theoretical capacity ...
MoS2 is a promising anode material due to its graphite-like structure and high theoretical capacity ...
Molybdenum disulfide (MoS2), which generally possesses a graphene-like two-dimensional layered struc...
A novel molybdenum disulfide/carbon (MoS2/C) nanocomposite is synthesized by a simple hydrothermal m...
Molybdenum disulfide is popular for rechargeable batteries, especially in Li-ion batteries, because ...
The preparation of few-layered ultrasmall MoS2 nanosheets inlayed into carbon frameworks is challeng...
Molybdenum disulfide is popular for rechargeable batteries, especially in Li-ion batteries, because ...
Abstract A facile, cost-effective, non-toxic, and surfactant-free route has been developed to synthe...
Electrochemically stable molybdenum disulfide (MoS2) with a two-dimensional nanowall structure is su...
Layered MoS2 has attracted much attention as a promising anode material for lithium ion batteries. T...
Layered MoS2 has attracted much attention as a promising anode material for lithium ion batteries. T...
MoS2 nanoplates, consisting of disordered graphene-like layers, with a thickness of similar to 30 nm...
The demand for well-designed nanostructured composites with enhanced electrochemical performance for...