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Zinc Sputtering Target

Zinc Sputtering Target

Zinc Sputtering Target
Product No NRE-43184
CAS No. 7440-66-6
Formula Zn
Molecular Weight 65.38 g/mol
Purity >99.99%
Density 7.14 g/cm³
Thickness 3 mm ± 0.5mm (can be customized)
Diameter 50 mm ± 1mm (can be customized)
Shape Round
Resistivity NA
Thermal Conductivity NA

Zinc Sputtering Target

Introduction:

Zinc sputtering target are made from high-purity zinc metal and are utilized in various thin film deposition processes, particularly in sputtering techniques. Zinc is a transition metal known for its excellent corrosion resistance, good electrical conductivity, and ability to form a variety of alloys and compounds. As a sputtering target, zinc plays a critical role in the production of thin films for a wide range of applications in electronics, optics, and materials science.

Applications

Protective Coatings:

Zinc is commonly used in protective coatings to prevent corrosion. These coatings are applied in automotive, aerospace, and marine industries to enhance the durability and lifespan of metal surfaces.

Electrical Contacts:

Zinc sputtered films are employed in electronic devices as electrical contacts, benefiting from their good conductivity and ability to form strong bonds with other materials.

Optical Coatings:

Zinc can be used in optical coatings for mirrors and lenses, where it enhances reflectivity, particularly in the visible spectrum.

Semiconductor Devices:

Zinc thin films are utilized in various semiconductor applications, including the fabrication of diodes and transistors, owing to their suitable electronic properties.

Solar Cells:

In photovoltaic technology, zinc sputtering targets are used to create thin films for solar cells, enhancing their efficiency through improved conductivity and light absorption.

Alloy Formation:

Zinc is often combined with other metals (like aluminum or magnesium) to form alloys with improved properties, which are then deposited as thin films for various applications.

Biomedical Applications:

Zinc’s biocompatibility makes it suitable for certain biomedical coatings, including applications in medical devices and implants.

 

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