
Rare Gas Market: The Silent Backbone of Semiconductor Lithography and the Push for Neon Supply Independence
Rare gases like neon and xenon are vital for semiconductor lithography and satellite propulsion, pushing demand amid global supply chain realignments.
NEWARK, DE, UNITED STATES, June 3, 2025 /EINPresswire.com/ -- The rare gas marketโcomprising noble gases such as helium, neon, argon, krypton, and xenonโis often discussed in terms of its use in lighting, welding, and MRI cooling systems. However, an increasingly vital and underexplored segment of this market is its pivotal role in semiconductor photolithography, particularly in extreme ultraviolet (EUV) lithography and deep ultraviolet (DUV) laser systems that rely heavily on ultra-pure neon.
This narrow yet strategically essential application of rare gases highlights a hidden vulnerability in global tech supply chains: the dependence on purified rare gases, especially neon, for advanced chip manufacturing. As geopolitical tensions and industrial disruptions reshape sourcing strategies, countries and corporations are racing to diversify neon supply and develop closed-loop recycling systems, positioning rare gases as critical raw materials in the digital economy.
๐๐๐ค๐ ๐๐ง๐๐จ๐ซ๐ฆ๐๐ ๐๐๐๐ข๐ฌ๐ข๐จ๐ง๐ฌ โ ๐๐๐๐๐ฌ๐ฌ ๐๐จ๐ฎ๐ซ ๐๐๐ฆ๐ฉ๐ฅ๐ ๐๐๐ฉ๐จ๐ซ๐ญ ๐๐ง๐ฌ๐ญ๐๐ง๐ญ๐ฅ๐ฒ! https://www.futuremarketinsights.com/reports/sample/rep-gb-14654
๐๐ง๐๐๐ซ๐ฌ๐ญ๐๐ง๐๐ข๐ง๐ ๐๐๐ซ๐ ๐๐๐ฌ๐๐ฌ ๐๐ง๐ ๐๐ก๐๐ข๐ซ ๐๐๐ฆ๐ข๐๐จ๐ง๐๐ฎ๐๐ญ๐จ๐ซ ๐๐จ๐ฅ๐
Rare gases are characterized by their chemical inertness, high ionization potentials, and stable electronic configurations. While this makes them largely unreactive, it also enables their use in highly specialized environmentsโsuch as plasma etching, laser excitation, and photolithography.
Neon, in particular, is indispensable for excimer lasers used in deep ultraviolet lithography (DUV), a process required to etch circuit patterns onto silicon wafers at nanometer scales. A typical DUV lithography tool may consume up to 30 liters of purified neon per hour, making consistent and high-purity supply crucial for chip yield and performance.
As chip architectures shrink and demand for high-speed, low-power semiconductors grows in applications like AI, 5G, and EVs, the importance of uninterrupted access to high-purity rare gases is becoming non-negotiable.
๐๐๐จ๐ง ๐๐ง๐ ๐ญ๐ก๐ ๐๐ฎ๐ฉ๐ฉ๐ฅ๐ฒ ๐๐ก๐๐ข๐ง ๐ ๐ซ๐๐ ๐ข๐ฅ๐ข๐ญ๐ฒ ๐๐ฑ๐ฉ๐จ๐ฌ๐๐ ๐๐ฒ ๐ญ๐ก๐ ๐๐ค๐ซ๐๐ข๐ง๐ ๐๐ซ๐ข๐ฌ๐ข๐ฌ
An often overlooked fact is that prior to 2022, over 50% of the worldโs high-purity neon used for semiconductor manufacturing was processed in Ukraine, particularly by companies such as Ingas and Cryoin. These companies extracted and purified neon gasโoften a byproduct of Russian steel productionโinto the 99.999% pure form required by semiconductor foundries.
The outbreak of the Russia-Ukraine conflict in early 2022 disrupted this supply chain almost overnight, creating a panic in the semiconductor industry. Prices for neon surged by over 600% within weeks, and chipmakers were forced to scramble for alternatives. This disruption exposed just how fragile the neon supply chain had becomeโcentered around a few suppliers with limited redundancy or domestic alternatives.
In response, countries like the United States, South Korea, and Japan have begun investing in domestic rare gas purification plants and recycling systems. For instance, SK Materials and Air Liquide have announced projects to recover and refine neon from industrial gas streams within their own borders, reducing dependency on external suppliers.
๐๐ง๐ฅ๐จ๐๐ค ๐๐จ๐ฆ๐ฉ๐ซ๐๐ก๐๐ง๐ฌ๐ข๐ฏ๐ ๐๐๐ซ๐ค๐๐ญ ๐๐ง๐ฌ๐ข๐ ๐ก๐ญ๐ฌ โ ๐๐ฑ๐ฉ๐ฅ๐จ๐ซ๐ ๐ญ๐ก๐ ๐ ๐ฎ๐ฅ๐ฅ ๐๐๐ฉ๐จ๐ซ๐ญ ๐๐จ๐ฐ: https://www.futuremarketinsights.com/reports/rare-gas-market
๐๐ฅ๐จ๐ฌ๐๐-๐๐จ๐จ๐ฉ ๐๐๐๐ฒ๐๐ฅ๐ข๐ง๐ : ๐ ๐๐ญ๐ซ๐๐ญ๐๐ ๐ข๐ ๐๐ก๐ข๐๐ญ ๐ข๐ง ๐๐๐ซ๐ ๐๐๐ฌ ๐๐ฌ๐
An emerging trend in the rare gas market is the development of closed-loop recovery systems in semiconductor fabrication plants (fabs). These systems capture and reprocess rare gasesโespecially neon and argonโused in lithography and etching processes.
Intel and TSMC, among other major foundries, have begun investing in such systems, not just for cost reduction, but to ensure resilience against geopolitical and market shocks. These recycling systems can recover up to 90% of rare gases used in cleanroom environments, reducing the need for virgin supply and mitigating the impact of market volatility.
This evolution is transforming the business model of rare gas suppliers from a volume-based model to a service-based model, where long-term supply agreements, on-site recovery systems, and integrated purification solutions are becoming standard.
๐๐๐ง๐จ๐ง ๐๐ง๐ ๐๐ซ๐ฒ๐ฉ๐ญ๐จ๐ง: ๐๐ข๐๐ก๐ ๐๐๐ฌ๐๐ฌ ๐๐จ๐ซ ๐๐ข๐ ๐ก-๐๐๐๐ก ๐๐ฉ๐ญ๐ข๐๐ฌ ๐๐ง๐ ๐๐๐ซ๐จ๐ฌ๐ฉ๐๐๐
While neon is under the spotlight, xenon and krypton are also carving out niche roles in advanced technologies. Xenon is used in ion propulsion systems for satellites, a growing market as satellite constellations proliferate to support internet connectivity and Earth observation.
For instance, SpaceXโs Starlink and Amazonโs Project Kuiper are driving demand for xenon-fueled electric propulsion, where the gas is ionized and expelled to maneuver satellites in space with high precision and fuel efficiency. Given its high atomic mass and inert behavior, xenon is ideal for this application.
Krypton, on the other hand, is gaining interest for its role in multi-layer insulation systems and advanced lighting technologies in defense and aerospace. Both gases are also being investigated for their potential in thermoacoustic refrigeration systems, a novel cooling method without moving parts.
๐๐๐ซ๐ค๐๐ญ ๐๐ฒ๐ง๐๐ฆ๐ข๐๐ฌ ๐๐ง๐ ๐๐ญ๐ซ๐๐ญ๐๐ ๐ข๐ ๐๐ฆ๐ฉ๐ฅ๐ข๐๐๐ญ๐ข๐จ๐ง๐ฌ
According to Future Market Insights, the global rare gas market is projected to reach USD 6.81 billion by 2035, growing at a CAGR of 4.6%, with the semiconductor segment accounting for an outsized share of revenue despite lower volume use. The primary drivers include rising chip complexity, tighter purity requirements, and the geopolitical shift toward localized supply chains.
China, in particular, is rapidly expanding its own rare gas production and purification capacity in an effort to achieve semiconductor self-sufficiency. Companies like Hangzhou Hangyang and Baosteel Gases are investing in air separation units and neon purification facilities to support domestic chip fabs.
๐๐๐ง๐๐ซ๐๐ฅ & ๐๐๐ฏ๐๐ง๐๐๐ ๐๐๐ญ๐๐ซ๐ข๐๐ฅ๐ฌ ๐๐ง๐๐ฎ๐ฌ๐ญ๐ซ๐ฒ ๐๐ง๐๐ฅ๐ฒ๐ฌ๐ข๐ฌ: https://www.futuremarketinsights.com/industry-analysis/general-and-advanced-materials
Meanwhile, the United States' CHIPS and Science Act includes provisions to fund rare gas infrastructure as part of its broader reshoring strategy. This reflects a growing recognition that supply chain security for rare gases is a national strategic interest, akin to lithium or rare earth metals.
๐๐๐ซ๐ ๐๐๐ฌ๐๐ฌ ๐๐ฌ ๐๐ญ๐ซ๐๐ญ๐๐ ๐ข๐ ๐๐ง๐ฉ๐ฎ๐ญ๐ฌ ๐ข๐ง ๐ญ๐ก๐ ๐๐ข๐ ๐ข๐ญ๐๐ฅ ๐๐ ๐
Rare gases, once relegated to specialized uses in lighting or welding, have become critical enablers of cutting-edge technologies, from EUV lithography to satellite propulsion. Their role in maintaining the stability and performance of semiconductor and aerospace ecosystems is no longer optionalโit is fundamental.
The neon crisis of 2022 served as a wake-up call, demonstrating that supply chain resilience for rare gases is as important as chip design or fabrication capacity. As the market matures, expect a continued shift from bulk gas sales to integrated supply models, complete with on-site recovery, local purification, and geopolitical risk mitigation.
๐๐๐ฒ ๐๐๐ ๐ฆ๐๐ง๐ญ๐ฌ ๐จ๐ ๐๐๐ซ๐ค๐๐ญ ๐๐๐ฉ๐จ๐ซ๐ญ
By Rare Gas Type:
The report consists of key types of rare gas including argon, krypton, neon, xenon, and helium.
By Supply Mode:
The market is classified into cylinders, bulk and micro bulk, drum tanks, and on site.
By End Use:
The market is classified into healthcare, manufacturing, electronics, laser, lighting, and others.
By Region:
The analysis of the rare gas market has been carried out in key countries North America, Latin America, Western Europe, Eastern Europe, South Asia and Pacific, East Asia, The Middle East and Africa.
๐๐๐ฅ๐๐ญ๐๐ ๐๐๐ฉ๐จ๐ซ๐ญ๐ฌ:
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