Solicitations
› ENERGY, DEPARTMENT OF
› NAICS 335999
TECHNOLOGY LICENSING OPPORTUNITY Enhanced Stability for Li Metal Batteries with Molybdenum Decorated Collectors
ENERGY, DEPARTMENT OF · Solicitation BA-1265 · NAICS 335999 · Unrestricted (full and open) · Closed
This solicitation has closed.
Responses were due 07 August 2026.
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Solicitation details
| Solicitation number | BA-1265 |
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| Notice ID | 03aa3ebb455744ae8d298e318a723bbc |
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| Agency | ENERGY, DEPARTMENT OF |
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| Sub-tier | ENERGY, DEPARTMENT OF |
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| Contracting office | BATTELLE ENERGY ALLIANCE DOE CNTR |
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| NAICS code | 335999 |
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| Product / service code (PSC) | 6140 |
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| Set-aside | Unrestricted (full and open) |
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| Notice type | Special Notice |
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| Posted | 15 April 2026 |
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| Response deadline | 07 August 2026 (closed) |
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| Place of performance | Idaho Falls, ID, USA |
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Description
TECHNOLOGY LICENSING OPPORTUNITY Enhanced Stability for Li Metal Batteries with Molybdenum Decorated Collectors Enhancing Stability and Performance of Lithium-Metal Batteries for High-Energy Density Transportation. Overview: Anode-free rechargeable lithium (Li) batteries are highly effective energy storage systems due to their significantly increased energy density and reduced cost. These batteries can be more easily manufactured than other Li-ion battery architectures because of the absence of an active (reactive) anode material. However, significant challenges, including Li dendrite growth and low coulombic efficiency, have prevented their practical implementation. Still, Li metal is widely viewed as the most promising anode material for high-energy Li-ion batteries due to its high specific capacity and low electrochemical potential. Description: Researchers at Idaho National Lab have developed an anode-free rechargeable lithium battery with a molybdenum (Mo) based current collector at the anode side. This system shows improved cycling performance due to uniform Li nucleation during plating compared with traditional Cu collectors. Molybdenum nanoparticles embedded in the surface of the current collector will induce uniform Li plating/stripping morphologies with reduced overpotential, suppressing dendrite growth and dead Li formation. Benefits: Significantly increased energy density Improved cycling performance compared to other Li metal batteries Scalable process uses commercially available sputtering technology Applications: Lithium-metal batteries Development Status: TRL 2, technology is in need of proof-of-concept work[RMB1] . IP Status: Patent Application No. 17/819,993, Current Collectors with a Group 6 Metal Thereon and Related Electrochemical Cells and Methods, BEA Docket No. BA-1265. Partner with Idaho National Laboratory (INL) for Access to Pioneering Technology and Mutual Growth Managed by Battelle Energy Alliance, LLC, INL offers unique opportunities for businesses to access and license advanced technology. Our agreements are tailored to provide flexibility and affordability, particularly supporting small businesses in their growth and innovation endeavors. By licensing our intellectual property, you not only gain access to groundbreaking technology but also contribute to economic development and public welfare. We invite you to explore our technology portfolio, designed to give your organization a competitive edge in the market. Learn more about our licensing opportunities and the support we provide at: https://inl.gov/inl-initiatives/technology-deployment. For specific discussions on how your business can benefit, please contact Andrew Rankin at td@inl.gov. INL s Technology Deployment department focuses exclusively on licensing intellectual property and partnering with industry collaborators capable of commercializing our innovations. Our goal is to commercialize the technologies developed by INL researchers. We do not engage in purchasing, manufacturing, procurement decisions, or providing funding. Additionally, this is not a call for external services to assist in the development of this technology.
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