Product Introduction
Platinum target is made from high-purity platinum metal and is commonly used in vacuum deposition processes such as magnetron sputtering, evaporation, and ion plating. With platinum's inherent high chemical stability, corrosion resistance, and high-temperature performance, it forms uniform and dense films under harsh conditions, providing a reliable material foundation for electronic devices, optical components, and high-end decorative items.
Outstanding Characteristics of Platinum Target
Excellent Chemical Stability
Platinum is almost inert to acids, alkalis, and oxidizers, making it ideal for preparing corrosion-resistant films and devices used in harsh environments.
Excellent High-Temperature Performance
With a high melting point of 1768°C, platinum targets and their deposited films maintain exceptional structural and chemical stability. This thermal resilience makes them ideal for high-temperature processing environments and demanding high-power applications where material integrity is paramount.
Excellent Electrical and Thermal Conductivity
With a combination of high conductive efficiency and advanced thermal regulation, Pt thin films enhance the operational stability of optoelectronic systems. They are particularly effective in high-power densities where maintaining thermal equilibrium is critical to preventing component degradation.
High Density and Uniformity
Advanced melting techniques ensure that the target material is dense and uniform, which enhances film thickness consistency during deposition and improves the performance stability of devices.
Wide Applications of Platinum Target
Optical Coatings
Platinum target films are utilized for high-performance optical components, including high-reflection mirrors, advanced filters, and optical communication lenses. These coatings enhance transmittance, improve reflectance uniformity, and boost overall system durability, ensuring long-term stable operation of critical optical infrastructure.
Decorative Coatings
Platinum coatings are utilized to form high-end metallic glossy finishes on luxury goods such as jewelry, watches, mobile phones, and automotive interior parts. These coatings offer sophisticated aesthetic appeal combined with superior functional properties, including exceptional wear resistance, corrosion resistance, and anti-oxidation capabilities.
Electronic Devices
Platinum is utilized in the fabrication of conductive films and functional layers for semiconductors, electrodes, sensors, and MEMS devices. Its unique properties ensure superior electrical performance and the long-term operational stability required for high-reliability micro-systems.
Technical Characteristics

Purity
99.99%

Relative Density
≥99%
Application Fields
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