Renewable Design for Nd Sputtering Target - Molybdenum – Rich
Renewable Design for Nd Sputtering Target - Molybdenum – Rich Detail:
Molybdenum is a silvery-white lustrous metal. It is a hard, tough, and high strength material with low degree of thermal expansion, low heat resistance, and superior thermal conductivity. It has an atomic weight of 95.95, melting point of 2620℃, boiling point of 5560℃ and density of 10.2g/cm³.
Molybdenum sputtering target is a kind of industrial material extensively used in conductive glass, STN/TN/TFT-LCD, ion coating, PVD sputtering, X-ray tubes for mammary industries.
In electronic industry, Molybdenum sputtering targets are used in electrodes or wiring material, in the semiconductor integrated circuit, flat panel display and solar panel manufacturing for their excellent corrosion resistance and environmental performance.
Molybdenum (Mo) is a preferred back contact material for CIGS solar cells. Mo has high conductivity and is more chemically stable and mechanically stable during CIGS growth than other materials.
Rich Special Materials is a Manufacturer of Sputtering Target and could produce high purity Molybdenum Sputtering Materials according to Customers’ specifications. For more information, please contact us.
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We pursue the administration tenet of "Quality is exceptional, Provider is supreme, Name is first", and will sincerely create and share success with all clientele for Renewable Design for Nd Sputtering Target - Molybdenum – Rich , The product will supply to all over the world, such as: Frankfurt, French, Slovakia, Most problems between suppliers and clients are due to poor communication. Culturally, suppliers can be reluctant to question things they do not understand. We break down those barriers to ensure you get what you want to the level you expect, when you want it. Faster delivery time and the product you want is our Criterion .
By Roxanne from Grenada - 2018.09.29 13:24
Cooperate with you every time is very successful, very happy. Hope that we can have more cooperation!
By Dinah from Roman - 2018.09.08 17:09