Xi'an Gemei Metal Material Co., Ltd.
Xi'an Gemei Metal Material Co., Ltd.

The semiconductor industry is a hardware sector developed on the basis of semiconductors, and has now become an essential part of modern technology and people's daily life. As the core foundation of the modern technology industry, the semiconductor industry involves multiple links such as materials, design, manufacturing, packaging and testing, supporting the development of almost all high-tech fields including electronics, communications, computing, artificial intelligence, and the Internet of Things.

Tungsten and Molybdenum Materials for Semiconductor Industry
Tungsten and Molybdenum Materials for Semiconductor Industry

Tungsten and Molybdenum Materials for Semiconductor Industry

In semiconductor manufacturing, tungsten and molybdenum have become key materials due to their excellent physical and chemical properties. Tungsten, with its high melting point, low resistivity, and outstanding resistance to electromigration, is widely used in interconnect via filling and gate electrodes of logic chips. Especially in processes below 40nm, the barrier layer composed of tungsten and titanium nitride can effectively inhibit copper diffusion. Molybdenum, on the other hand, has become the preferred material for display panels and photovoltaic cells due to its lower thermal expansion coefficient and cost advantages, but its oxidation-prone characteristic needs to be overcome through nitrogen atmosphere processes. With the growing demand for advanced packaging and three-dimensional integration, tungsten maintains a stable position in terms of reliability in multi-layer wiring, while molybdenum shows emerging potential in flexible electronics and two-dimensional material devices. Together, they drive improvements in semiconductor performance and energy efficiency.


With nearly 30 years of experience in the production and processing of tungsten and molybdenum materials for the semiconductor field, Gemet Metal boasts stable production processes and rich experience, enabling the materials to maximize their performance in semiconductor applications. Moreover, we can ensure the stable supply of materials in large quantities, thus guaranteeing that customers have sufficient and high-quality raw materials for stable production or capacity expansion.


Our Advantages

  • We can provide custom production or manufacture according to your drawings as per your needs.


  • Our equipment capacity allows for batch ordering and production.


  • Our materials feature higher purity, and each batch undergoes a full inspection to ensure material consistency and stability.


  • Our production is more standardized, with more precise dimensions and longer service life.


  • Our production cycle is shorter, enabling us to complete order production more quickly.


Our Advantages
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For Any Interested Tungsten and Molybdenum Solutions
  • 2026 New Factory Construction Plan
    2026-01-12
    2026 New Factory Construction Plan
    The new factory purchased 42 mu of land on January 1st, 2025. Currently, the factory buildings are under construction and will be officially put into production in March 2026. It will construct factor...
  • Introduction to molybdenum-rhenium Materials
    2024-08-01
    Introduction to molybdenum-rhenium Materials
    Gemei's molybdenum-rhenium materials are high-end alloy materials with high-temperature stability, excellent corrosion resistance and high strength. Inheriting the high melting point advantages of...
  • Introduction to MHC Materials
    2024-08-01
    Introduction to MHC Materials
    1. Performance Description1.1 Outstanding high-temperature mechanical properties: MHC materials (a type of high-performance metal matrix composite) maintain excellent tensile strength, creep resistanc...
  • Introduction to Gemei's TZM Alloy Materials
    2024-08-01
    Introduction to Gemei's TZM Alloy Materials
    1. Performance Description1.1 Excellent high-temperature mechanical properties: TZM alloy (titanium-zirconium-molybdenum alloy) maintains high tensile strength and hardness in high-temperature environ...
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