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Special Notice Expired 2 notices

Tech Licensing Opportunity: Cathode Production from Recycled LIB Metals BA-1409

Solicitation BA-1409 Copied Notice ID 2e3710a551f046d6b32897738c93edfe Copied ENERGY, DEPARTMENT OF — BATTELLE ENERGY ALLIANCE–DOE CNTR
SAM.gov
Posted
Sep 16, 2025
Deadline
Nov 01, 2025
Set-aside
None
NAICS
335999
PSC
6140

Summary

AI-generated · Sep 28, 2025

A licensing opportunity for a process that makes cathode materials from recycled lithium-ion battery metals. The method recovers nickel and cobalt from end-of-life batteries, electronic waste, and steel scrap using electrochemical leaching with Tutton’s salt to produce high-purity salts for cathode synthesis, allowing customization of Ni/Co ratios. It focuses on regenerating valuable cathode materials from post-consumer sources rather than improving battery capacity, with the aim of strengthening domestic supply chains, reducing reliance on imported critical metals, and promoting environmental sustainability. The technology is designed to be scalable and adaptable to different production needs, supporting applications across electric vehicles, secondary battery manufacturing, portable electronics, and energy storage systems.

Licensing is handled through Idaho National Laboratory’s technology partnerships program, with terms tailored to each licensee. The opportunity is for an early-stage technology (TRL 2-3) that offers rights to the proprietary process and the ability to customize material properties, enabling a domestic, sustainable cathode supply chain. Interested businesses can engage through INL’s technology deployment channels to explore licensing and collaborative opportunities.

Cathode Production from Recycled LIB Metals An innovative process that uses recycled lithium-ion batteries to produce high-quality cathode materials with a simple, cost-effective method, enhancing supply chain security and sustainability. The Challenge: As the global demand for electric vehicles (EVs) skyrockets, so does the need for efficient and sustainable battery technologies. The heart of this challenge lies in the critical metals nickel (Ni) and cobalt (Co) that power these technologies, which are currently sourced from geopolitically unstable regions and are subject to volatile supply chains. Addressing these challenges, INL (Idaho National Laboratory) introduces an innovative solution, leveraging domestic resources to enhance the reliability and sustainability of battery supply chains. How it Works: This technology advances a sustainable supply chain for lithium-ion battery production by recycling metals like nickel and cobalt from end-of-life batteries, electronic waste, and steel scrap. Using a unique process, it electrochemically leaches metals to create high-purity salts for cathode synthesis, addressing metal shortages and promoting environmental sustainability. The technique extracts nickel and cobalt from spent batteries using Tutton s salt, adjusting the ratio for high-quality cathode synthesis. This approach emphasizes not an advancement in battery capacity but the capacity to regenerate valuable cathode materials from post-consumer batteries, effectively creating a secondary battery with robust capabilities. Key Advantages: Enhanced Supply Chain Security: Reduces dependency on foreign critical metals, aligning with national security and economic stability. Versatility and Scalability: Easily adaptable to different production scales and capable of refining the proprietary salt to meet diverse manufacturing needs. Cost Efficiency: Utilizes domestic sources of recycled metals, lowering the overall cost of cathode production. Environmental Sustainability: Promotes recycling of electronic waste, reducing environmental impact and supporting circular economy initiatives. Customizable Material Properties: Allows for adjustable ratios of nickel and cobalt, optimizing cathode performance for specific battery applications. Increased Production Scalability: Simplifies the cathode production process, facilitating easier scaling and adaptation to meet market demands. Problems Solved Shortage and supply chain vulnerabilities of critical metals like Ni and Co. Economic and national security risks associated with reliance on imported metals. Environmental impact of mining and disposing of battery materials. Market Applications Electric Vehicles: Provides a stable supply of high-performance cathodes, crucial for the booming EV market. Secondary Battery Manufacturing: Ideal for companies looking to invest in sustainable production cycles for electric vehicles and energy storage systems. Portable Electronics: Supports the sustainability of consumer electronics by enhancing the lifespan and efficiency of batteries. Energy Storage Systems: Contributes to more reliable and sustainable grid storage solutions, crucial for integrating renewable energy sources. Development Status: TRL 2-3 US Provisional Patent Application No. 63/645,602, METHODS OF FORMING A CATHODE MATERIAL FROM A TUTTON S SALT, BEA Docket No. BA-1409 INL Tech Partnerships: Your Gateway to Innovation INL offers strategic access to proprietary technology, enhancing small business growth and contributing to economic and public advancement. We cater licensing terms to each business we work with, ensuring mutually beneficial agreements. Engage with our diverse technology offerings to propel your company forward. Learn more about our licensing opportunities and the support we provide at https://inl.gov/technology-deployment/. For specific discussions on how your business can benefit, please contact td@inl.gov.

From Special Notice posted on Sep 16, 2025

Cathode Production from Recycled LIB Metals An innovative process that uses recycled lithium-ion batteries to produce high-quality cathode materials with a simple, cost-effective method, enhancing supply chain security and sustainability. The Challenge: As the global demand for electric vehicles (EVs) skyrockets, so does the need for efficient and sustainable battery technologies. The heart of this challenge lies in the critical metals nickel (Ni) and cobalt (Co) that power these technologies, which are currently sourced from geopolitically unstable regions and are subject to volatile supply chains. Addressing these challenges, INL (Idaho National Laboratory) introduces an innovative solution, leveraging domestic resources to enhance the reliability and sustainability of battery supply chains. How it Works: This technology advances a sustainable supply chain for lithium-ion battery production by recycling metals like nickel and cobalt from end-of-life batteries, electronic waste, and steel scrap. Using a unique process, it electrochemically leaches metals to create high-purity salts for cathode synthesis, addressing metal shortages and promoting environmental sustainability. The technique extracts nickel and cobalt from spent batteries using Tutton s salt, adjusting the ratio for high-quality cathode synthesis. This approach emphasizes not an advancement in battery capacity but the capacity to regenerate valuable cathode materials from post-consumer batteries, effectively creating a secondary battery with robust capabilities. Key Advantages: Enhanced Supply Chain Security: Reduces dependency on foreign critical metals, aligning with national security and economic stability. Versatility and Scalability: Easily adaptable to different production scales and capable of refining the proprietary salt to meet diverse manufacturing needs. Cost Efficiency: Utilizes domestic sources of recycled metals, lowering the overall cost of cathode production. Environmental Sustainability: Promotes recycling of electronic waste, reducing environmental impact and supporting circular economy initiatives. Customizable Material Properties: Allows for adjustable ratios of nickel and cobalt, optimizing cathode performance for specific battery applications. Increased Production Scalability: Simplifies the cathode production process, facilitating easier scaling and adaptation to meet market demands. Problems Solved Shortage and supply chain vulnerabilities of critical metals like Ni and Co. Economic and national security risks associated with reliance on imported metals. Environmental impact of mining and disposing of battery materials. Market Applications Electric Vehicles: Provides a stable supply of high-performance cathodes, crucial for the booming EV market. Secondary Battery Manufacturing: Ideal for companies looking to invest in sustainable production cycles for electric vehicles and energy storage systems. Portable Electronics: Supports the sustainability of consumer electronics by enhancing the lifespan and efficiency of batteries. Energy Storage Systems: Contributes to more reliable and sustainable grid storage solutions, crucial for integrating renewable energy sources. Development Status: TRL 2-3 US Provisional Patent Application No. 63/645,602, METHODS OF FORMING A CATHODE MATERIAL FROM A TUTTON S SALT, BEA Docket No. BA-1409 INL Tech Partnerships: Your Gateway to Innovation INL offers strategic access to proprietary technology, enhancing small business growth and contributing to economic and public advancement. We cater licensing terms to each business we work with, ensuring mutually beneficial agreements. Engage with our diverse technology offerings to propel your company forward. Learn more about our licensing opportunities and the support we provide at https://inl.gov/technology-deployment/. For specific discussions on how your business can benefit, please contact td@inl.gov.

From Special Notice posted on Apr 20, 2026

Notice history

2
  1. Special Notice Posted Sep 16, 2025
  2. Special Notice LATEST Posted Apr 20, 2026
    • Response Deadline: Nov 01, 2025Jun 01, 2026

Details

Solicitation number BA-1409
Notice ID 2e3710a551f046d6b32897738c93edfe
Notice type Special Notice
Product / Service (PSC) 6140
NAICS 335999
Place of performance Idaho Falls, Idaho
Archive date Nov 16, 2025

Award Information

Not yet awarded

Documents

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View on SAM.gov

Contacts

primary
Andrew Rankin

Email

Agency

ENERGY, DEPARTMENT OF
ENERGY, DEPARTMENT OF
BATTELLE ENERGY ALLIANCE–DOE CNTR

Place of Performance

Idaho Falls, Idaho 83415
USA

Dates

Posted Sep 16, 2025 10 months ago
Last Updated Aug 06, 2026 2 days ago
Due Nov 01, 2025 9 months ago