Licensing Opportunity: Self-Repairing Oxygen Evolution Reaction Catalysts for Electrolysis
| Agency: | ENERGY, DEPARTMENT OF |
|---|---|
| State: | Tennessee |
| Type of Government: | Federal |
| FSC Category: |
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| NAICS Category: |
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| Posted Date: | Sep 11, 2024 |
| Due Date: | Oct 26, 2024 |
| Solicitation No: | 2024-09-11-T |
| Original Source: | Please Login to View Page |
| Contact information: | Please Login to View Page |
| Bid Documents: | Please Login to View Page |
Description
- Contract Opportunity Type: Special Notice (Original)
- All Dates/Times are: (UTC-04:00) EASTERN STANDARD TIME, NEW YORK, USA
- Original Published Date: Sep 11, 2024 11:01 am EDT
- Original Response Date: Oct 26, 2024 05:00 pm EDT
- Inactive Policy: Manual
- Original Inactive Date: Oct 27, 2024
- Initiative:
- Original Set Aside:
- Product Service Code:
- NAICS Code:
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Place of Performance:
Oak Ridge , TN 37830USA
Invention Reference Number: 202405572
Electrolysis is common in the production of clean hydrogen used to produce other chemicals such as ammonia, based on heavy use of precious metals, not mined domestically. Typical electrolyzer components prone to degradation and are not suited for long-term durability. This technology uses stainless steel or manufactured alloys that are inexpensive and abundant in the U.S. to create oxygen evolution reaction catalysts for use in electrolysis that can repair and replenish themselves for long-term operation.
Description
This technology optimizes pretreatment conditions for stainless steel/alloys electrode activation. The nickel-rich stainless electrodes show high oxygen evolution reaction (OER). This self-repairing catalyst on the stainless steel electrode layer can regenerate from the metal body substrate under the OER conditions, which could self-repair the catalyst layer and address the catalyst degradation. Additionally, the issues related to the decays of substrate and ionomer can be minimized. The multi-layered electrode can be self-replenished by the steel substrate, and remain stable for long-term operation. These catalysts eliminate use of binders, benefiting long-term durability of the electrolyzer system. This technology can address all three bottlenecks of activity, stability, and cost associated with alkaline OER, and can be used for reducing or eliminating carbon dioxide emissions into the atmosphere.
Benefits
- Reduces cost drastically
- Energy efficient
- Decarbonizes industry
- Greenhouse gas friendly; reduces carbon dioxide emissions
- Stable, active, and efficient
- Uses commercially available electrodes
- Uses domestically available material
Applications and Industries
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Any electrolysis industry using:
- oxygen evolution reaction
- hydrogen evolution reaction
- carbon dioxide reduction reaction
- and nitrogen reduction reaction
- Catalyst producers
- Hydrogen producers
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.
- Oak Ridge National Laboratory PO Box 2008
- Oak Ridge , TN 37831
- USA
- Eugene R. Cochran
- cochraner@ornl.gov
- Phone Number 8655762830
- Sep 11, 2024 11:01 am EDTSpecial Notice (Original)
See Also
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City of Oak Ridge
Due by 9/22/2026
Basic Information Negotiation BID1000313 Title UT Systemwide Internal Order Promotional Items Negotiation Type
The University of Tennessee
Due by 10/12/2026
Due Date Description Purchasing Contact 9/29/2026 RFQ - Metal Fabrication Services Tina Girdley
Tennessee Tech University
Due by 9/29/2026