Contract · Federal
Technology Licensing Opportunity: Room-Temperature Electrochemical Metallization of Rare Earth Elements
- Agency
- ENERGY, DEPARTMENT OF / ENERGY, DEPARTMENT OF
- Location
- Idaho Falls, ID
- Amount
- Amount not listed
- Posted
- Jul 29, 2026
- Set-aside
- None (open competition)
- NAICS code
- 331492 look up NAICS codes
- PSC code
- AG22
Timeline
-
Posted
Jul 29, 2026
-
Status
Open now
What contracts like this typically pay
No award history yet for this category (NAICS 331492).
What this contract is for
- Agency
- ENERGY, DEPARTMENT OF / ENERGY, DEPARTMENT OF
- Location
- Idaho Falls, ID
- NAICS
- 331492
- Scope
- Federal
Note: This is a technology licensing opportunity.
No procurement, grants, or funding opportunities are associated with this notice.
Room-Temperature Electrochemical Metallization of Rare Earth Elements A low-energy, low-hazard alternative to molten-salt electrolysis for sustainable REE production.
Technology Summary This invention introduces a method to produce metallic rare earth elements (REEs) through room-temperature electrometallization in anhydrous electrolytes.
By leveraging unique ion-pairing interactions, Lewis acid-base chemistry, and interfacial structuring, the system enables efficient REE reduction and stable metal formation without the extreme energy use or toxic byproducts of conventional fused salt electrolysis.
Problem Addressed High cost & regulatory barriers: Current molten-salt electrolysis (600–1200 °C) generates toxic HF gas and rare earth fluoride waste, triggering costly EPA and OSHA compliance requirements.
Environmental impact: Legacy processes produce hazardous waste with long-term contamination risks, leading to industry abandonment in North America.
Supply chain dependence: Metallic REEs are only produced at scale in China, creating vulnerabilities for U.S. manufacturers and defense applications.
Solution The invention replaces high-temperature fused salt electrolysis with an ambient-temperature electrochemical process.
The approach integrates three synergistic innovations: Tuned electrolyte nucleophilicity – enabling more efficient reduction pathways.
Lewis acid-base coordination control – stabilizing the ligand environment during deposition.
Interfacial electrochemical structuring – improving reaction kinetics and metal stability.
This combination allows REE electrodeposition at room temperature, reducing both energy demand and hazardous byproduct for...
Official solicitation and documents
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