Sunday, August 31, 2025

Global Electronic and Semiconductor Gases Market Research Report 2025

What is Global Electronic and Semiconductor Gases Market?

The Global Electronic and Semiconductor Gases Market is a crucial segment within the broader electronics industry, providing essential gases used in the manufacturing and processing of semiconductors and electronic components. These gases are vital for various processes such as etching, doping, and deposition, which are integral to the production of microchips and other electronic devices. The market encompasses a wide range of gases, including hydrogen, nitrogen trifluoride, chlorine, silicon gases, and ammonia, among others. These gases are used in different stages of semiconductor manufacturing, each serving a specific purpose to ensure the quality and efficiency of the production process. The demand for these gases is driven by the rapid advancement in technology and the increasing need for smaller, faster, and more efficient electronic devices. As the electronics industry continues to grow, the market for electronic and semiconductor gases is expected to expand, driven by innovations in semiconductor technology and the increasing adoption of electronic devices worldwide. The market's growth is also supported by the rising demand for renewable energy technologies and electric vehicles, which rely heavily on advanced semiconductor components.

Electronic and Semiconductor Gases Market

Hydrogen, Nitrogen Trifluoride, Chlorine Gas, Silicon Gases, Ammonia Gas, Others in the Global Electronic and Semiconductor Gases Market:

Hydrogen is one of the most commonly used gases in the Global Electronic and Semiconductor Gases Market. It plays a critical role in the semiconductor manufacturing process, particularly in the annealing and deposition stages. Hydrogen is used to create a reducing atmosphere, which helps in the removal of oxides and other impurities from the semiconductor surface, ensuring a clean and defect-free layer. This is essential for the production of high-quality semiconductor devices. Nitrogen trifluoride (NF3) is another important gas in this market, primarily used for chamber cleaning in semiconductor manufacturing. It is highly effective in removing residues and deposits from the chamber walls, ensuring that the manufacturing equipment remains clean and efficient. NF3 is preferred over other cleaning gases due to its high cleaning efficiency and lower environmental impact. Chlorine gas is used in the etching process, where it helps in the precise removal of material from the semiconductor wafer. This is crucial for creating the intricate patterns and structures required in modern electronic devices. Silicon gases, such as silane and dichlorosilane, are used in the deposition process to form thin films of silicon on the semiconductor wafer. These films are essential for the creation of various semiconductor components, including transistors and diodes. Ammonia gas is used in the nitridation process, where it helps in the formation of silicon nitride layers on the semiconductor wafer. These layers are important for providing insulation and protection to the underlying semiconductor material. Other gases used in the Global Electronic and Semiconductor Gases Market include argon, helium, and carbon tetrafluoride, each serving specific roles in the manufacturing process. Argon is often used as a carrier gas, providing an inert atmosphere for various processes, while helium is used for cooling and leak detection. Carbon tetrafluoride is used in the etching process, similar to chlorine gas, but with different chemical properties that make it suitable for specific applications. The use of these gases is essential for the production of high-quality semiconductor devices, and their demand is expected to grow as the electronics industry continues to evolve and expand.

Chamber Clean, Oxidation, Deposition, Etching, Doping, Others in the Global Electronic and Semiconductor Gases Market:

The Global Electronic and Semiconductor Gases Market plays a vital role in various areas of semiconductor manufacturing, including chamber cleaning, oxidation, deposition, etching, doping, and others. In chamber cleaning, gases like nitrogen trifluoride are used to remove residues and deposits from the manufacturing equipment, ensuring that the chambers remain clean and efficient. This is crucial for maintaining the quality and consistency of the semiconductor products. Oxidation is another important area where gases like oxygen and hydrogen are used to form oxide layers on the semiconductor wafer. These layers are essential for creating insulating barriers and protecting the underlying semiconductor material. In the deposition process, gases such as silane and ammonia are used to form thin films of materials like silicon and silicon nitride on the wafer. These films are critical for the creation of various semiconductor components, including transistors and diodes. Etching is a process where gases like chlorine and carbon tetrafluoride are used to precisely remove material from the wafer, creating the intricate patterns and structures required in modern electronic devices. Doping is another key area where gases like phosphine and arsine are used to introduce impurities into the semiconductor material, altering its electrical properties and enabling the creation of p-type and n-type semiconductors. Other areas where electronic and semiconductor gases are used include annealing, where gases like hydrogen are used to remove defects and improve the quality of the semiconductor material, and cooling, where gases like helium are used to maintain the temperature of the manufacturing equipment. The use of these gases is essential for the production of high-quality semiconductor devices, and their demand is expected to grow as the electronics industry continues to evolve and expand.

Global Electronic and Semiconductor Gases Market Outlook:

In 2024, the global market for Electronic and Semiconductor Gases was valued at approximately $4,134 million. It is anticipated to grow significantly, reaching an estimated size of $6,899 million by 2031, with a compound annual growth rate (CAGR) of 7.7% during the forecast period. Despite being the largest region, Asia Pacific experienced a decline of 2.0 percent. In contrast, the Americas saw a substantial increase in sales, reaching $142.1 billion, marking a 17.0% year-on-year growth. Similarly, Europe experienced a growth in sales, amounting to $53.8 billion, which is a 12.6% increase year-on-year. Japan also saw an increase in sales, reaching $48.1 billion, representing a 10.0% year-on-year growth. However, the Asia-Pacific region, despite being the largest, experienced a decline in sales, amounting to $336.2 billion, which is a 2.1% decrease year-on-year. This market outlook highlights the dynamic nature of the global electronic and semiconductor gases market, with varying growth rates across different regions. The overall growth of the market is driven by the increasing demand for advanced semiconductor components and the rapid advancement in technology.


Report Metric Details
Report Name Electronic and Semiconductor Gases Market
Accounted market size in year US$ 4134 million
Forecasted market size in 2031 US$ 6899 million
CAGR 7.7%
Base Year year
Forecasted years 2025 - 2031
by Type
  • Hydrogen
  • Nitrogen Trifluoride
  • Chlorine Gas
  • Silicon Gases
  • Ammonia Gas
  • Others
by Application
  • Chamber Clean
  • Oxidation
  • Deposition
  • Etching
  • Doping
  • Others
Production by Region
  • North America
  • Europe
  • China
  • Japan
  • South Korea
Consumption by Region
  • North America (United States, Canada)
  • Europe (Germany, France, UK, Italy, Russia)
  • Asia-Pacific (China, Japan, South Korea, Taiwan)
  • Southeast Asia (India)
  • Latin America (Mexico, Brazil)
By Company SK Materials, Versum Materials, Air Liquide, Taiyo Nippon Sanso, Praxair-Linde, Kanto Denka, Showa Denko, Air Products and Chemicals, Hyosung, Sumitomo Seika Chemicals, Central Glass, The 718th Research Institute of CSSC, Adeka, REC, Mitsui Chemical, Tokuyama, Huate Gas
Forecast units USD million in value
Report coverage Revenue and volume forecast, company share, competitive landscape, growth factors and trends

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