
Product Name
Name: MoS2 nanosheets dispersion
Product Overview
MoS2 is a typical transition metal disulfide with a two-dimensional layered structure similar to graphene. MoS2 has three crystal structures: 1T type, 2H type, and 3R type. Among them, 1T type and 3R type are metastable phases, and 2H type is stable phase. Macroscopic MoS2 materials mostly exist in 2H type and have a unique sandwich structure, belonging to the hexagonal crystal system.
The synthesis methods of MoS2 are mainly divided into two categories: "top-down" exfoliation method and "bottom-up" exfoliation method. The "top-down" exfoliation method includes micro mechanical exfoliation, liquid-phase exfoliation, and lithium-ion intercalation, mainly using physical means to exfoliate bulk MoS2 into single-layer or few layer layered structures. The "bottom-up" exfoliation method includes chemical vapor deposition, hydrothermal method, and high-temperature thermal decomposition method, mainly using chemical means to grow atoms and molecules into nanoscale thin films and granular MoS2 under certain environmental conditions.
XF209 MoS2 dispersion is prepared by liquid-phase exfoliation method, and various solvents such as water ethanol, DMF, NMP can be selected as dispersion media according to different application requirements.
Technical Parameter
Thickness: 1-10 layers
Size: 50nm-1μm
Concentration: 1mg/mL
Solvent: Water-Ethanol,NMP,DMF
Product Features
Good dispersibility: The dispersed solution of molybdenum disulfide nanosheets obtained by liquid-phase exfoliation method has good dispersibility and can stably exist in various solvents such as water, ethanol, and DMF.
Excellent physical and chemical properties: Molybdenum disulfide nanosheets have a large specific surface area and abundant active sites, making them outstanding in fields such as catalysis and optoelectronic devices.
Excellent light absorption ability: It has strong absorption ability for visible light and can be used for photocatalytic water splitting to produce hydrogen, organic pollutant degradation, etc.
Application Fields
Catalyst: Due to the high specific surface area and abundant active sites of molybdenum disulfide nanosheets, they can be used as efficient catalysts for various chemical reactions, such as photocatalytic water splitting for hydrogen production and organic pollutant degradation.
Electronic devices: Molybdenum disulfide nanosheets are widely used in flexible electronics, sensors, and optoelectronic devices due to their unique electronic properties.
Lubricant: Molybdenum disulfide nanosheets have excellent tribological properties and can be used as additives in lubricating oils to significantly improve their anti friction and anti-wear effects.
Composite materials: Molybdenum disulfide nanosheets can also be combined with other materials to manufacture high-performance composite materials, enhancing their mechanical and electrical properties.
Related Information
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