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Magnetron sputtering deposition of high-purity rhenium (Re) as an important thin film preparation technique

Time:2023-10-12Number:919

Applied FilmIt is a commonly used thin film preparation technique that can produce thin film materials with excellent properties on different substrates. Among many metals, high-purity rhenium (Re) has the characteristics of high melting point, good corrosion resistance, and chemical stability, and is widely used in the manufacture of heat-resistant and corrosion-resistant alloys, as well as high-temperature thermocouples, special filaments, and catalysts for organic synthesis industries.

High purity rhenium (Re) has important application value in the preparation of alloys. Due to its high melting point and excellent corrosion resistance, it can still maintain good stability in high temperature environments. As important equipment in the aerospace field, satellites and rockets have very high requirements for heat and corrosion resistance in their outer shells. Magnetron sputtering coated high-purity rhenium (Re) can provide effective protection for these shells, ensuring their excellent durability and reliability in extreme environments.

High purity rhenium (Re) has also been widely used in the field of high-temperature thermocouples. High temperature thermocouple is a device capable of measuring temperature at high temperatures, commonly used in industrial fields such as petroleum and chemical engineering. High purity rhenium (Re) has excellent high-temperature stability and low-temperature drift characteristics, and is therefore widely used in the manufacturing of high-temperature thermocouples. The high-purity rhenium (Re) thin film prepared by magnetron sputtering technology can provide more stable and accurate temperature measurement, meeting the requirements of industrial production for precise temperature control.

In addition, high-purity rhenium (Re) can also be used in the manufacturing of special filaments. Special filaments are commonly used in medical and scientific research fields, requiring high temperature stability, no gasification, and corrosion resistance for filament materials. The magnetron sputtering deposition of high-purity rhenium (Re) thin film technology can provide a uniform and stable protective layer for special filaments, extending their service life and stability. The high-purity rhenium (Re) filament prepared by this thin film technology can maintain stable brightness and longer lifespan in special environments, providing a more reliable lighting source for medical and scientific research fields.

In addition, high-purity rhenium (Re) is widely used in the preparation of catalysts in the organic synthesis industry. Catalysts play a crucial role in the field of organic synthesis. The high-purity rhenium (Re) thin film prepared by magnetron sputtering technology can provide a highly active surface, improve the reaction efficiency and selectivity of the catalyst. High purity rhenium (Re) catalysts can effectively catalyze important reactions such as olefins and esterification in organic synthesis, providing important technical support for the organic synthesis industry.

In short,Magnetron sputtering deposition of high-purity rhenium(Re), as an important thin film preparation technology, has a wide range of applications in the preparation of heat-resistant and corrosion-resistant alloys, manufacturing of high-temperature thermocouples, special filaments, and organic synthesis industrial catalysts. Its excellent performance and stability can meet the application requirements in high demand environments, providing reliable support for the development of related industries. The development and application of high-purity rhenium (Re) thin films prepared by magnetron sputtering technology will bring more opportunities for technological innovation and industrial development in various fields.
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