What are the advantages and applications of molybdenum disulfide

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Molybdenum is the primary component in molybdenite. The powder is black and has a metallic sheen. The chemical name is MoS2, melting point is 1185degC. Density is 4.80g/cm (14.4degC) and Mohs Hardness is 1.01.5. Introduction on the benefits of molybdenum sulfide

1. Keep the production area clean, tidy and free of oil.
2. This can save you a lot of lubricants.
3. Reduce the workload of maintenance workers and improve the technical conditions.
4. Because of the low friction coefficient, molybdenum isothiodide has a small friction resistance, which allows for electricity savings. The brother unit can save 12% electricity. 5. It can improve attendance rates, reduce loss of equipment components, and extend the service lifetime of friction equipment.
6. The application of molybdenum diulfide lubrication resolves the technical problem and improves accuracy and efficiency.
7. Molybdenum diulfide is a filling and filling agent that can restore geometric dimensions to certain parts. This extends the life of the part.
8. Molybdenum diulfide has properties such as being waterproof, resistant to alkali and acid, and moisture proof.
9. Molded components using molybdenum-disulfide plastics or powder melting can save a great deal of nonferrous metals.
10. The complicated oil supply systems can be removed from some equipment after using molybdenum diulfide as lubricant. This simplifies equipment structure, improves area utilization and also causes major reforms.

Application of molybdenum sulfide

It is also capable of superconducting. Its electronic properties surpass those of graphene. Its applications are wide-ranging and include electronic communications (e.g., transistors, sensors), biomedicine, flexible manufacturing (including flexible screens), energy, and many others. ).

Due to their unique two-dimensional layered structure with atomic thickness and photoelectric characteristics, two-dimensional materials have gained much attention. Most representative are transition metal chalcogenides including molybdenum chalcogenide (MoS2) tungsten chalcogenide (WS2) molybdenum selenide WSe2 tungsten selenide WSe2 etc. because they possess visible light bandgap qualities that the first discovered material graphene did not possess.

It is very easy to break the van der Waals force that exists between atomic layers in a two-dimensional substance. Two-dimensional materials are used in research to create lighter optoelectronic components. Molybdenum Disulfide, with its multiple layers of disulfide, is one of most studied two-dimensional material in the family of TMDCs. Its 2H phase also happens to be the most stable.

Compared with the traditional intercalator-assisted electrochemical method, the intercalator-assisted plasma liquid phase technology has fewer product defects and does not introduce additional groups. It can also be used to prepare high-quality, two-dimensional material. Promote the flexible use of two-dimensional material in optoelectronics as well as other fields and continue to improve optical-electronic device development.

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