Element Symbol: MoCu
CAS: [N/A]
Model: Sup-MoCu
Purity: 4N, 3N5,3N, 2N8,2N5
Shape: Round
Thickness: [N/A]
Dimension: [N/A]
(Note: Purity, shape, thickness, and dimensions can all be customized)
Molybdenum-copper alloy Sputtering target material is a composite made of molybdenum (Mo) and copper (Cu), known for its excellent mechanical and thermal properties. This alloy is commonly used in high-temperature, high-current, and high-thermal-conductivity applications across electronics, optoelectronics, and nuclear energy sectors.
Note: Purity, shape, thickness, and dimensions can all be customized,Please feel free to contact us for more details.
### Key Properties
- High Electrical Conductivity: The high conductivity of copper allows molybdenum-copper alloys to perform well in electrical applications.
- Excellent Thermal Conductivity: The alloy has a high thermal conductivity, which aids in heat dissipation, making it suitable for high-power devices.
- Good Mechanical Strength: The strength and high-temperature resistance of molybdenum ensure the alloy remains stable under extreme conditions.
### Applications
1. Electronic Devices
Molybdenum-copper alloy target materials are commonly used to manufacture conductive films and electrodes in electronic devices, especially in high-power and high-temperature environments.
2. Optoelectronic Devices
In optoelectronic applications, molybdenum-copper alloys can serve as materials for photodetectors, providing good electrical conductivity and thermal management.
3. Nuclear Industry
This alloy is used in the construction of components in nuclear reactors due to its high-temperature resistance and corrosion resistance.
4. Thermal Management Systems
Molybdenum-copper alloys are utilized in heat sinks and heat exchangers, effectively dissipating heat thanks to their excellent thermal conductivity.
### Applications in the Semiconductor Field
1. Conductive Films
Molybdenum-copper alloys are used to create conductive films, particularly in high-power electronic devices, enhancing electrical performance.
2. Electrode Materials
These alloys serve as electrode materials in certain semiconductor devices, benefiting from their excellent conductivity and high-temperature tolerance.
3. Thermal Management
The high thermal conductivity of molybdenum-copper alloys plays a crucial role in thermal management for semiconductor devices, effectively reducing temperatures and improving performance and reliability.
4. Thermoelectric Materials
In thermoelectric applications, molybdenum-copper alloys can be used in thermoelectric generation and cooling systems, exhibiting good thermoelectric properties.
To receive a prompt quotation and expedited delivery, please provide complete target material specifications. This includes details on purity, dimensions, tolerance requirements, and any other technical specifications.
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