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High-Capacity Hydrogen and Hydrogen Isotope Getters

Federal · Department of EnergyDue Saturday, November 14, 2026
Client
Department of Energy
RFP Number
—
Posted
—
Category
US Federal
Budget
—
NAICS
325998
Set-aside
No Set aside used
Contact
Satya Srinivasan

Description

AI Generated

Los Alamos National Laboratory seeks partners to commercialize or license a new class of high-capacity hydrogen and hydrogen isotope getters. The required scope involves deploying novel organic alkyne chemistry materials that permanently remove hydrogen, deuterium, and tritium across diverse market applications, including microelectronics packaging, medical devices, aerospace, and oil infrastructure. Interested parties must contact the Richard P. Feynman Center for Innovation via email at [email protected] to discuss potential interest in this technology. The provided text omits bidding eligibility, submission procedures, official deadlines, proposal evaluation criteria, contract terms, and budget details.

Official SAM.gov notice

Solicitation number
S-193538
Agency
Department of Energy
Buying office
Triad - DOE Contractor
Notice type
Special Notice
Responses due
Nov 14, 2026, 7:00 PM ET
Posted on SAM.gov
Aug 14, 2026
NAICS
325998 · All Other Miscellaneous Chemical Product and Preparation Manufacturing
Product/service code
6850
Set-aside
No Set aside used
Place of performance
LOS Alamos, NM, 87545
Contracting contact
Satya Srinivasan
[email protected]
Additional contact
Lindsay Augustyn
[email protected]
Read the official notice description

Even small amounts of hydrogen can damage sensitive equipment over time. As hydrogen accumulates inside sealed environments, it can corrode metals, weaken structural materials, degrade electronic components, and, in some applications, create explosion hazards. Preventing that buildup is essential for maintaining the reliability and safety of many high-value systems. Hydrogen getters are materials built into sealed devices and systems to remove hydrogen before it can accumulate. Like a moisture absorber, they remove an unwanted gas. Instead of trapping water, however, they chemically react with hydrogen and lock it away permanently. Depending on the application, a getter may take the form of a pellet, coating, thin film, powder, or printable material. Many commercially available getters rely on zirconium-based materials that offer limited hydrogen storage capacity, require activation before use, or operate effectively only within a narrow temperature range. Some also depend on costly vacuum-deposition manufacturing processes that limit design flexibility. Los Alamos researchers have developed a new class of hydrogen getters designed to overcome these limitations. The materials capture hydrogen and its isotopes, including deuterium and tritium, across a broad range of operating conditions without requiring activation while offering significantly higher storage capacity and greater flexibility for manufacturing and product integration. Value Proposition Hydrogen can quietly build up inside sealed devices and industrial systems, shortening equipment life and creating safety risks. Los Alamos National Laboratory has developed a new class of high-capacity hydrogen getters that permanently remove hydrogen before it causes damage. Compared with conventional getters, this technology stores more hydrogen, operates across a wider range of conditions, and can be manufactured in multiple forms for easy integration into commercial products. Hydrogen uptake rate decreases as getter materials fill with hydrogen. Compared with a conventional getter (brown), the LANL high-capacity getter (green) maintains rapid hydrogen capture over a much larger storage capacity. Advantages Stores significantly more hydrogen than many conventional getter materials. Permanently removes hydrogen, improving long-term reliability in sealed systems. Operates across a broad temperature range without activation. Captures hydrogen even at pressures well below atmospheric levels. Selectively removes hydrogen in mixed-gas environments. Hydrogen uptake rates can be tailored to specific applications. Compatible with polymers and available as films, coatings, pellets, powders, strands, and printable pastes for flexible product integration. Reduces projected material and manufacturing costs compared with many zirconium-based getter technologies. Scalable manufacturing supports applications ranging from miniature electronics to large industrial systems. Technology Description The getter materials chemically react with hydrogen and its isotopes to form stable compounds that permanently lock the hydrogen inside the material, providing long-term protection for sealed devices and industrial equipment. The technology is based on a novel organic alkyne chemistry. Alkynes are carbon-containing molecules that readily react with hydrogen, allowing the material to store substantially more hydrogen than many conventional getter systems. Unlike many commercial getters, these materials operate without activation and continue to perform across a broad temperature range. They also selectively capture hydrogen in the presence of gases such as helium, nitrogen, argon, and methane, making them well suited for complex industrial and vacuum environments. The hydrogen capture rate can be tailored by adjusting the catalyst formulation for specific operating conditions. Hydrogen capture has also been demonstrated at pressures well below atmospheric conditions, expanding the range of potential applications. The materials are compatible with polymers and other common manufacturing materials, allowing them to be incorporated into films, coatings, pellets, powders, strands, adhesives, foams, and printable pastes. Market Applications Semiconductor and microelectronics packaging Hermetically sealed electronics Aerospace and defense Medical devices Nuclear material storage and processing Vacuum and gas purification systems Cryogenic equipment Oil and gas infrastructure Scientific instrumentation High-reliability industrial systems TRL 4 U.S. patent pending LA-UR-26-25730 LANL Tech Partnerships: Unlock the Innovative Potential Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products. LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact [email protected]. Note: This is not a call for external services for the development of this technology. https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology m.lanl.gov/tech-search

Source: SAM.gov contract opportunities data (U.S. federal public data).

Incumbent

No incumbent history found for this requirement. The notice does not cite a current contract, and no earlier award from this buying office matches it.

Market context

Awards in the same category (All Other Miscellaneous Chemical Product and Preparation Manufacturing). This is not this requirement's award history.

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Top vendors in this category: Department of Energy, NAICS 325998, since Oct 1, 2023

1 contract awards in this NAICS over the period.

  1. 1. 3M COMPANY$18.6M

Source: USAspending.gov federal award data (U.S. federal public data). A contract is called the incumbent only when the notice or its documents cite it by number.

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