Abstract In the context of emerging electric devices, the demand for advanced energy storage materials has intensified. These materials must encompass both surface and diffusion-driven charge storage mechanisms. While diffusion-driven reactions offer high capacitance by utilizing the bulk of the material, their effectiveness diminishes at higher discharge rates. Conversely, surface-controlled reactions provide rapid charge/discharge rates and high power density. To strike a balance between these attributes, we devised a tri-composite material, TiO2/Carbon/MoS2 (T10/MoS2). This innovative design features a highly porous carbon core for efficient diffusion and redox-active MoS2 nanosheets on the surface. Leveraging these characteristics, the ...
Supercapacitors have been the key target as energy storage devices for modern technology that need f...
Growing environmental factors like depletion of fossil fuels have given room to alternative energy t...
In MoS2–carbon composite catalysts for hydrogen evolution reaction (HER), the carbon materials gener...
MoS2, a typical two-dimensional transition metal sulfide nanomaterial, has attracted much attention ...
MoS2 is a 2D material that has been widely used in supercapacitor applications because of its layere...
We conceived a material composed of a pseudocapacitive core and an electrostatic double-layer capaci...
MoS2 is a 2D material that has been widely used in supercapacitor applications because of its layere...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
Both energy conversion and storage technologies need to be developed hand-to-hand simultaneously to ...
Energy storage provides sustainability when coupled with renewable but intermittent energy sources s...
The pyrolysis of metal-organic frameworks (MOFs) to derive porous nanocarbons and metal oxides has a...
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanoc...
Facile assembly of robust electrodes with excellent electrochemical performances is still challengin...
In the past few decades, there has been a tremendous ongoing effort to understand the nature of nano...
With the surging demand for flexible and portable electronic devices featuring high energy and power...
Supercapacitors have been the key target as energy storage devices for modern technology that need f...
Growing environmental factors like depletion of fossil fuels have given room to alternative energy t...
In MoS2–carbon composite catalysts for hydrogen evolution reaction (HER), the carbon materials gener...
MoS2, a typical two-dimensional transition metal sulfide nanomaterial, has attracted much attention ...
MoS2 is a 2D material that has been widely used in supercapacitor applications because of its layere...
We conceived a material composed of a pseudocapacitive core and an electrostatic double-layer capaci...
MoS2 is a 2D material that has been widely used in supercapacitor applications because of its layere...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
Both energy conversion and storage technologies need to be developed hand-to-hand simultaneously to ...
Energy storage provides sustainability when coupled with renewable but intermittent energy sources s...
The pyrolysis of metal-organic frameworks (MOFs) to derive porous nanocarbons and metal oxides has a...
The needs for energy storage devices have kindled researchers desire to explore and synthesize nanoc...
Facile assembly of robust electrodes with excellent electrochemical performances is still challengin...
In the past few decades, there has been a tremendous ongoing effort to understand the nature of nano...
With the surging demand for flexible and portable electronic devices featuring high energy and power...
Supercapacitors have been the key target as energy storage devices for modern technology that need f...
Growing environmental factors like depletion of fossil fuels have given room to alternative energy t...
In MoS2–carbon composite catalysts for hydrogen evolution reaction (HER), the carbon materials gener...